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<ep-patent-document id="EP10177615B9W1" file="EP10177615W1B9.xml" lang="en" country="EP" doc-number="2270559" kind="B9" correction-code="W1" date-publ="20140402" status="c" dtd-version="ep-patent-document-v1-4">
<SDOBI lang="en"><B000><eptags><B001EP>......DE....FRGB..IT............IE..................................................................</B001EP><B005EP>J</B005EP><B007EP>DIM360 Ver 2.40 (30 Jan 2013) -  2999001/0</B007EP></eptags></B000><B100><B110>2270559</B110><B120><B121>CORRECTED EUROPEAN PATENT SPECIFICATION</B121></B120><B130>B9</B130><B132EP>B1</B132EP><B140><date>20140402</date></B140><B150><B151>W1</B151><B153>74</B153><B155><B1551>de</B1551><B1552>Bibliographie</B1552><B1551>en</B1551><B1552>Bibliography</B1552><B1551>fr</B1551><B1552>Bibliographie</B1552><B1551>de</B1551><B1552>Beschreibung</B1552><B1551>en</B1551><B1552>Description</B1552><B1551>fr</B1551><B1552>Description</B1552><B1551>de</B1551><B1552>Ansprüche EN</B1552><B1551>en</B1551><B1552>Claims EN</B1552><B1551>fr</B1551><B1552>Revendications EN</B1552></B155></B150><B190>EP</B190></B100><B200><B210>10177615.1</B210><B220><date>20060403</date></B220><B240><B241><date>20110809</date></B241><B242><date>20110906</date></B242></B240><B250>en</B250><B251EP>en</B251EP><B260>en</B260></B200><B300><B310>101979</B310><B320><date>20050408</date></B320><B330><ctry>US</ctry></B330></B300><B400><B405><date>20140402</date><bnum>201414</bnum></B405><B430><date>20110105</date><bnum>201101</bnum></B430><B450><date>20130821</date><bnum>201334</bnum></B450><B452EP><date>20130307</date></B452EP><B480><date>20140402</date><bnum>201414</bnum></B480></B400><B500><B510EP><classification-ipcr sequence="1"><text>G02B   5/23        20060101AFI20101129BHEP        </text></classification-ipcr><classification-ipcr sequence="2"><text>G02B   1/04        20060101ALI20110106BHEP        </text></classification-ipcr><classification-ipcr sequence="3"><text>C07D 311/94        20060101ALI20110106BHEP        </text></classification-ipcr><classification-ipcr sequence="4"><text>G03C   1/73        20060101ALI20110106BHEP        </text></classification-ipcr></B510EP><B540><B541>de</B541><B542>Augenoptische Einrichtungen mit photochromen Materialien mit reaktiven Substituenten</B542><B541>en</B541><B542>Ophthalmic devices comprising photochromic materials with reactive substituents</B542><B541>fr</B541><B542>Dispositifs ophthalmiques comportant des matières photochromiques contenant des substituants réactifs</B542></B540><B560><B561><text>US-A1- 2004 186 241</text></B561><B561><text>US-A1- 2004 191 520</text></B561></B560></B500><B600><B620><parent><pdoc><dnum><anum>06749497.1</anum><pnum>1872159</pnum></dnum><date>20060403</date></pdoc></parent></B620></B600><B700><B720><B721><snm>Wenjing, Xiao</snm><adr><str>
3142 Barberry Court</str><city>Murrysville, PA 15668</city><ctry>US</ctry></adr></B721><B721><snm>Van Gemert, Barry</snm><adr><str>
432 Eleanor Street</str><city>Pitcairn, PA 15140</city><ctry>US</ctry></adr></B721><B721><snm>Mahadevan, Shivkumar</snm><adr><str>
1905 White Dogwood Lane</str><city>Orange Park, FL 32003</city><ctry>US</ctry></adr></B721><B721><snm>Molock, Frank</snm><adr><str>
1543 Wildfern Drive</str><city>Orange Park, FL 32003</city><ctry>US</ctry></adr></B721></B720><B730><B731><snm>Johnson and Johnson Vision Care, Inc.</snm><iid>100152639</iid><irf>P055429EP</irf><adr><str>7500 Centurion Parkway, 
Suite 100</str><city>Jacksonville, FL 32256</city><ctry>US</ctry></adr></B731></B730><B740><B741><snm>Kirsch, Susan Edith</snm><sfx>et al</sfx><iid>101232546</iid><adr><str>Carpmaels &amp; Ransford LLP 
One Southampton Row</str><city>London WC1B 5HA</city><ctry>GB</ctry></adr></B741></B740></B700><B800><B840><ctry>DE</ctry><ctry>FR</ctry><ctry>GB</ctry><ctry>IE</ctry><ctry>IT</ctry></B840><B880><date>20110209</date><bnum>201106</bnum></B880></B800></SDOBI>
<description id="desc" lang="en"><!-- EPO <DP n="1"> --><!-- EPO <DP n="2"> -->
<heading id="h0001"><b>BACKGROUND</b></heading>
<p id="p0001" num="0001">Various non-limiting embodiments of the present disclosure relate to ophthalmic devices comprising photochromic materials comprising a reactive substituent. Other non-limiting embodiments of the present disclosure relate to photochromic ophthalmic devices, and methods of making the photochromic ophthalmic devices, wherein the photochromic ophthalmic devices comprise the photochromic materials described herein.</p>
<p id="p0002" num="0002">Many conventional photochromic materials, such as, for example, photochromic naphthopyrans, can undergo a transformation from one state to another in response to the absorption of electromagnetic radiation. For example, many conventional photochromic materials are capable of transforming between a first "clear" or "bleached" ground state and a second "colored" activated state in response to the absorption of certain wavelengths of electromagnetic radiation (or "actinic radiation"). As used herein the term "actinic radiation" refers to electromagnetic radiation that is capable of causing a photochromic material to transform from one form or state to another. The photochromic material may then revert back to the clear ground state in response to thermal energy in the absence of actinic radiation. Photochromic articles and compositions that contain one or more photochromic materials, for example photochromic lenses for eyewear applications, generally display clear and colored states that correspond to the photochromic material(s) that they contain. Thus, for example, eyewear lenses that contain photochromic materials can transform from a clear state to a colored state upon exposure to actinic radiation, such as certain wavelengths found in sunlight, and can revert back to the clear state in the absence of such radiation.</p>
<p id="p0003" num="0003">When utilized in photochromic articles and compositions, conventional photochromic materials are typically incorporated into a host polymer matrix by one of imbibing, blending and/or bonding. For example, one or more photochromic materials may be intermixed with a polymeric material or precursor thereof, and<!-- EPO <DP n="3"> --> thereafter the photochromic composition may be formed into the photochromic article or, alternatively, the photochromic composition may be coated on a surface of an optical element as a thin film or layer. As used herein, the term "photochromic composition" refers to a photochromic material in combination with one or more other material, which may or may not be a photochromic material. Alternatively, the photochromic material may be imbibed into a pre-formed article or coating.</p>
<p id="p0004" num="0004">In certain circumstances it may be desirable to modify the compatibility of the photochromic material with the host polymer into which it is incorporated. For example, by making the photochromic material more compatible with the host polymer, it is less likely that the combination will demonstrate cloudiness or haze due to phase separation or migration of the photochromic material in the host polymer. In addition, compatibilized photochromic materials may be more soluble in the host polymer and/or more uniformly distributed throughout the polymer matrix. Further, by modifying the compatibility of a photochromic material with a host polymer, other properties of the photochromic composition, such as, but not limited to, fade and/or activation rate, saturated optical density, molar absorptivity or molar extinction coefficient, and activated color, may also be effected. Modifications to such properties may be done, for example, to match the same properties of complementary photochromic materials or to enable the use of such compounds in hydrophilic or hydrophobic coating compositions, thin films or in rigid to flexible plastic matrices.</p>
<p id="p0005" num="0005">One approach to modifying the compatibility of a photochromic material with a host polymer is to attach a polymerizable moiety to the photochromic material via a polyalkoxylated linking group, for example, a polyethylene glycol, a polypropylene glycol, and/or a polybutylene glycol linking group. One potential limitation of utilizing polyalkoxylated linking groups is the degree of purity of the resultant photochromic material that can be readily achieved. For example, commercially available polyglycols that may be incorporated into the linking groups of these photochromic materials may comprise mixtures of glycol chains possessing<!-- EPO <DP n="4"> --> differing numbers of glycol units within each chain. Incorporation of these commercially available polyglycols into the photochromic material may lead to mixtures of compounds differing in chain lengths and molecular weights. This may lead to difficulty in purification, since one cannot readily separate out the desired photochromic materials in these mixtures.</p>
<p id="p0006" num="0006">Further, polyalkoxylated linking groups may comprise long chains containing multiple ether oxygen functionalities, which are inherently hydrophilic. While this may present certain desirable traits with regard to compatibility with the host polymer, linking groups with differing hydrophilicities, including linking groups that may be hydrophobic or, alternatively, linking groups of shorter length, may provide for different interactions with the host polymer and the resultant photochromic article.</p>
<p id="p0007" num="0007">Accordingly, for some applications it may be desirable to develop photochromic materials that may be incorporated into a variety of host polymers and which may comprise one or more reactive substituents having polarities (i.e. hydrophilicities or lipophilicities) that may more closely match the polarities of the host polymer. In other applications, it may be desirable to develop photochromic materials comprising one or more reactive substituent having polarities that do not match the polarities of the host polymers. In addition, it may be advantageous to develop photochromic materials comprising reactive substituents of uniform composition/molecular weight that can be readily purified, such as, by crystallization, chromatography, or other methods of purification known to one skilled in the art.</p>
<heading id="h0002"><b>BRIEF SUMMARY</b></heading><!-- EPO <DP n="5"> -->
<p id="p0008" num="0008">The invention provides an ophthalmic device comprising a photochromic material represented by one of structures I through IV, below, or mixtures thereof.<!-- EPO <DP n="6"> -->
<chemistry id="chem0001" num="0001"><img id="ib0001" file="imgb0001.tif" wi="126" he="50" img-content="chem" img-format="tif"/></chemistry>
<chemistry id="chem0002" num="0002"><img id="ib0002" file="imgb0002.tif" wi="142" he="59" img-content="chem" img-format="tif"/></chemistry>
wherein,
<ol id="ol0001" compact="compact" ol-style="">
<li>(a) R<sub>1</sub> is: a reactive substituent R, wherein said reactive substituent R is represented by one of:
<ul id="ul0001" list-style="dash" compact="compact">
<li>A-D-E-G-J;</li>
<li>G-E-G-J;</li>
<li>D-E-G-J;</li>
<li>A-D-J;</li>
<li>D-G-J; and</li>
<li>D-J;</li>
</ul>
wherein
<ul id="ul0002" list-style="none" compact="compact">
<li>-A- is -C(=O)-, -OC(=O)-, -NHC(=O)-, or -CH<sub>2</sub>-;<!-- EPO <DP n="7"> --></li>
<li>-D- is: a diamine residue or a derivative thereof, said diamine residue being an aliphatic diamine residue, a cyclo aliphatic diamine residue, a diazacycloalkane residue, an azacyclo aliphatic amine residue, a diazacrown ether residue, or an aromatic diamine residue, wherein a first amine nitrogen of said diamine residue forms a bond with -A-, structure I, structure II, structure III, or structure IV, and a second amine nitrogen of said diamine residue forms a bond with -E-, -G-, or -J; or an amino alcohol residue or a derivative thereof, said amino alcohol residue being an aliphatic amino alcohol residue, a cyclo aliphatic amino alcohol residue, an azacyclo aliphatic alcohol residue, a diazacyclo aliphatic alcohol residue, or an aromatic amino alcohol residue, wherein an amine nitrogen of said amino alcohol residue forms a bond with -A-, structure I, structure II, structure III, or structure IV, and an alcohol oxygen of said amino alcohol residue forms a bond with -E-, -G-, or -J, or said amine nitrogen of said amino alcohol residue forms a bond with -E-, -G-, or -J, and said alcohol oxygen of said amino alcohol residue forms a bond with -A-, structure I, structure II, structure III, or structure IV;</li>
<li>-E- is a dicarboxylic acid residue or a derivative thereof, said dicarboxylic acid residue being an aliphatic dicarboxylic acid residue, a cycloaliphatic dicarboxylic acid residue, or an aromatic dicarboxylic acid residue, wherein a first carbonyl group of said dicarboxylic acid residue forms a bond with -G- or -D-, and a second carbonyl group of said dicarboxylic acid residue forms a bond with -G-;</li>
<li>each -G- is independently: -[(OC<sub>2</sub>H<sub>4</sub>)<sub>x</sub>(OC<sub>3</sub>H<sub>6</sub>)<sub>y</sub>(OC<sub>4</sub>H<sub>8</sub>)<sub>z</sub>]-O-, wherein x, y, and z, are each independently a number between 0 and 50, and the sum of x, y, and z ranges from 1 to 50; or a polyol residue or a derivative thereof, said polyol residue being an aliphatic polyol residue, a cyclo aliphatic polyol residue, or an aromatic polyol residue, wherein a first polyol oxygen of said polyol residue forms a bond with -E-, -D-, structure I, structure II, structure III, or structure IV, and a second polyol oxygen of said polyol residue forms a bond with -E- or -J; and</li>
<li>-J is a group comprising acryl, methacryl, crotyl, 2-(methacryloxy) ethylcarbamyl, 2-(methacryloxy)ethoxycarbonyl, 4-vinylphenyl, vinyl, 1-chlorovinyl,<!-- EPO <DP n="8"> --> or epoxy, or -J is hydrogen, provided that if -J is hydrogen, -J is bonded to an oxygen of group -D- or -G-;</li>
<li>or R<sub>1</sub> is hydrogen; hydroxyl; C<sub>1</sub>-C<sub>3</sub> alkyl; or the group -C(=O)W, wherein W is -OR<sub>7</sub>, -N(R<sub>8</sub>)R<sub>9</sub>, piperidino or morpholino, wherein R<sub>7</sub> is allyl, C<sub>1</sub>-C<sub>6</sub> alkyl, phenyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl, phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy(C<sub>2</sub>-C<sub>4</sub>)alkyl or C<sub>1</sub>-C<sub>6</sub> haloalkyl; R<sub>8</sub> and R<sub>9</sub> are each independently C<sub>1</sub>-C<sub>6</sub> alkyl, C<sub>5</sub>-C<sub>7</sub> cycloalkyl, phenyl, mono-substituted phenyl, or di-substituted phenyl, wherein said phenyl substituents are C<sub>1</sub>-C<sub>6</sub> alkyl or C<sub>1</sub>-C<sub>6</sub> alkoxy, and said halo substituent is chloro or fluoro;</li>
</ul></li>
<li>(b) R<sub>1</sub>' is: the reactive substituent R; hydrogen; hydroxyl; C<sub>1</sub>-C<sub>3</sub> alkyl; or the group -C(=O)W, wherein W is -OR<sub>7</sub>, -N(R<sub>8</sub>)R<sub>9</sub>, piperidino or morpholino, wherein R<sub>7</sub> is allyl, C<sub>1</sub>-C<sub>6</sub> alkyl, phenyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl, phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy(C<sub>2</sub>-C<sub>4</sub>)alkyl or C<sub>1</sub>-C<sub>6</sub> haloalkyl; and R<sub>8</sub> and R<sub>9</sub> are each independently C<sub>1</sub>-C<sub>6</sub> alkyl, C<sub>5</sub>-C<sub>7</sub> cycloalkyl, phenyl, mono-substituted phenyl, or di-substituted phenyl, wherein said phenyl substituents are C<sub>1</sub>-C<sub>6</sub> alkyl or C<sub>1</sub>-C<sub>6</sub> alkoxy, and said halo substituent is chloro or fluoro;</li>
<li>(c) R<sub>2</sub> is the reactive substituent R; hydrogen; C<sub>1</sub>-C<sub>6</sub> alkyl; C<sub>3</sub>-C<sub>7</sub> cycloalkyl, substituted or unsubstituted phenyl; or -OR<sub>10</sub>; or -OC(=O)R<sub>10</sub>, wherein R<sub>10</sub> is hydrogen; C<sub>1</sub>-C<sub>6</sub> alkyl, phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, (C<sub>1</sub>-C<sub>6</sub>)alkoxy(C<sub>2</sub>-C<sub>4</sub>)alkyl, C<sub>3</sub>-C<sub>7</sub> cycloalkyl, or mono(C<sub>1</sub>-C<sub>4</sub>)alkyl substituted C<sub>3</sub>-C<sub>7</sub> cycloalkyl, and said phenyl substituents are C<sub>1</sub>-C<sub>6</sub> alkyl or C<sub>1</sub>-C<sub>6</sub> alkoxy;</li>
<li>(d) n is an integer ranging from 0 to 4 and each R<sub>3</sub> and R<sub>4</sub> are independently for each occurrence: the reactive substituent R; hydrogen; fluoro, chloro, C<sub>1</sub>-C<sub>6</sub> alkyl; C<sub>3</sub>-C<sub>7</sub> cycloalkyl; substituted or unsubstituted phenyl; -OR<sub>10</sub> or<!-- EPO <DP n="9"> --> -OC(=O)R<sub>10</sub>, wherein R<sub>10</sub> is hydrogen, C<sub>1</sub>-C<sub>6</sub> alkyl, phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, (C<sub>1</sub>-C<sub>6</sub>)alkoxy(C<sub>2</sub>-C<sub>4</sub>)alkyl, C<sub>3</sub>-C<sub>7</sub> cycloalkyl, or mono(C<sub>1</sub>-C<sub>4</sub>)alkyl substituted C<sub>3</sub>-C<sub>7</sub> cycloalkyl, and said phenyl substituents are C<sub>1</sub>-C<sub>6</sub> alkyl or C<sub>1</sub>-C<sub>6</sub> alkoxy; a mono-substituted phenyl, said phenyl having a substituent located at the para position, wherein the substituent is: a dicarboxylic acid residue or derivative thereof, a diamine residue or derivative thereof, an amino alcohol residue or derivative thereof, a polyol residue or derivative thereof, -CH<sub>2</sub>-, -(CH<sub>2</sub>)<sub>t</sub>-, or -[O-(CH<sub>2</sub>)<sub>t</sub>]<sub>k</sub>-, wherein t is an integer 2, 3, 4, 5 or 6 and k is an integer from 1 to 50, the substituent being connected to an aryl group on another photochromic material; -N(R<sub>11</sub>)R<sub>12</sub>, wherein R<sub>11</sub> and R<sub>12</sub> are each independently hydrogen, C<sub>1</sub>-C<sub>8</sub> alkyl, phenyl, naphthyl, furanyl, benzofuran-2-yl, benzofuran-3-yl, thienyl, benzothien-2-yl, benzothien-3-yl, dibenzofuranyl, dibenzothienyl, benzopyridyl, fluorenyl, C<sub>1</sub>-C<sub>8</sub> alkylaryl, C<sub>3</sub>-C<sub>20</sub> cycloalkyl, C<sub>4</sub>- C<sub>20</sub> bicycloalkyl, C<sub>5</sub>- C<sub>20</sub> tricycloalkyl or C<sub>1</sub>- C<sub>20</sub> alkoxyalkyl, wherein said aryl group is phenyl or naphthyl, or R<sub>11</sub> and R<sub>12</sub> come together with the nitrogen atom to form a C<sub>3</sub>-C<sub>20</sub> hetero-bicycloalkyl ring or a C<sub>4</sub>-C<sub>20</sub> hetero-tricycloalkyl ring; a nitrogen containing ring represented by the following graphic formula VA:
<chemistry id="chem0003" num="0003"><img id="ib0003" file="imgb0003.tif" wi="63" he="32" img-content="chem" img-format="tif"/></chemistry>
wherein each -Y- is independently chosen for each occurrence from -CH<sub>2</sub>-, -CH(R<sub>13</sub>)-, -C(R<sub>13</sub>)<sub>2</sub>-, -CH(aryl)-, -C(aryl)<sub>2</sub>-, and -C(R<sub>13</sub>)(aryl)-, and Z is -Y-, -O-, -S-, -S(O)-, -SO<sub>2</sub>-, -NH-, -N(R<sub>13</sub>)-, or -N(aryl)-, wherein each R<sub>13</sub> is independently C<sub>1</sub>-C<sub>6</sub> alkyl, each aryl is independently phenyl or naphthyl, m is an integer 1, 2 or 3, and p is an integer 0, 1, 2, or 3 and when p is 0, Z is -Y-; a group represented by one of the following graphic formulae VB or VC:<!-- EPO <DP n="10"> -->
<chemistry id="chem0004" num="0004"><img id="ib0004" file="imgb0004.tif" wi="108" he="36" img-content="chem" img-format="tif"/></chemistry>
wherein R<sub>15</sub>, R<sub>16</sub>, and R<sub>17</sub> are each independently hydrogen, C<sub>1</sub>-C<sub>6</sub> alkyl, phenyl, or naphthyl, or the groups R<sub>15</sub> and R<sub>16</sub> together form a ring of 5 to 8 carbon atoms, each R<sub>14</sub> is independently for each occurrence from C<sub>1</sub>-C<sub>6</sub> alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy, fluoro, or chloro and p is an integer 0, 1, 2, or 3; and unsubstituted, mono-, or di-substituted C<sub>4</sub>-C<sub>18</sub> spirobicyclic amine, or unsubstituted, mono- or di-substituted C<sub>4</sub>-C<sub>18</sub> spirotricyclic amine, wherein said substituents are independently aryl, C<sub>1</sub>-C<sub>6</sub> alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy, or phenyl(C<sub>1</sub>-C<sub>6</sub>)alkyl; or<br/>
an R<sub>3</sub> group in the 6-position and an R<sub>3</sub> group in the 7-position together form a group represented by one of VD and VE:
<chemistry id="chem0005" num="0005"><img id="ib0005" file="imgb0005.tif" wi="89" he="26" img-content="chem" img-format="tif"/></chemistry>
wherein T and T' are each independently oxygen or the group -NR<sub>11</sub>-, where R<sub>11</sub>, R<sub>15</sub>, and R<sub>16</sub> are as set forth above;</li>
<li>(e) R<sub>5</sub> and R<sub>6</sub> are each independently: the reactive substituent R; hydrogen; hydroxy; C<sub>1</sub>-C<sub>6</sub> alkyl; C<sub>3</sub>-C<sub>7</sub> cycloalkyl; allyl; substituted or unsubstituted phenyl; substituted or unsubstituted benzyl; chloro; fluoro; -C(=O)W', wherein W' is hydrogen, hydroxy, C<sub>1</sub>-C<sub>6</sub> alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy, the unsubstituted, mono-or di-substituted aryl groups phenyl or naphthyl, phenoxy, mono- or di-(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenoxy, mono- or di-(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenoxy, amino, mono(C<sub>1</sub>-C<sub>6</sub>)alkylamino, di(C<sub>1</sub>-C<sub>6</sub>)alkylamino, phenylamino, mono- or di-(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenylamino, or mono- or di-(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenylamino; -OR<sub>18</sub>, wherein R<sub>18</sub> is C<sub>1</sub>-C<sub>6</sub> alkyl, phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl<!-- EPO <DP n="11"> --> substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy(C<sub>2</sub>-C<sub>4</sub>)alkyl, C<sub>3</sub>-C<sub>7</sub> cycloalkyl, mono(C<sub>1</sub>-C<sub>4</sub>)alkyl substituted C<sub>3</sub>-C<sub>7</sub> cycloalkyl, C<sub>1</sub>-C<sub>6</sub>chloroalkyl, C<sub>1</sub>-C<sub>6</sub> fluoroalkyl, allyl, or the group -CH(R<sub>19</sub>)Y', wherein R<sub>19</sub> is hydrogen or C<sub>1</sub>-C<sub>3</sub> alkyl and Y' is CN, CF<sub>3</sub>, or COOR<sub>20</sub>, wherein R<sub>20</sub> is hydrogen or C<sub>1</sub>-C<sub>3</sub> alkyl or R<sub>18</sub> is the group -C(=O)W", wherein W" is hydrogen, C<sub>1</sub>-C<sub>6</sub> alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy, the unsubstituted, mono- or di-substituted aryl groups phenyl or naphthyl, phenoxy, mono- or di-(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenoxy, mono- or di-(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenoxy, amino, mono(C<sub>1</sub>-C<sub>6</sub>)alkylamino, di(C<sub>1</sub>-C<sub>6</sub>)alkylamino, phenylamino, mono- or di-(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenylamino, or mono- or di-(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenylamino, wherein each of said phenyl, benzyl, or aryl group substituents are independently C<sub>1</sub>-C<sub>6</sub> alkyl or C<sub>1</sub>-C<sub>6</sub> alkoxy; or a mono-substituted phenyl, said phenyl having a substituent located at the para position, wherein the substituent is: a dicarboxylic acid residue or derivative thereof, a diamine residue or derivative thereof, an amino alcohol residue or derivative thereof, a polyol residue or derivative thereof, -CH<sub>2</sub>-, -(CH<sub>2</sub>)<sub>t</sub>-, or -[O-(CH<sub>2</sub>)<sub>t</sub>]<sub>k</sub>-, wherein t is an integer 2, 3, 4, 5 or 6 and k is an integer from 1 to 50, the substituent being connected to an aryl group on another photochromic material; or R<sub>5</sub> and R<sub>6</sub> together form an oxo group, a spiro-carbocyclic group containing 3 to 6 carbon atoms, or a spiro-heterocyclic group containing 1 to 2 oxygen atoms and 3 to 6 carbon atoms including the spirocarbon atom, said spirocarbocyclic and spiro-heterocyclic groups being annellated with 0, 1 or 2 benzene rings; and</li>
<li>(f) B and B' are each independently: a substituted phenyl; a substituted aryl; a substituted 9-julolidinyl; a substituted heteroaromatic group chosen from pyridyl, furanyl, benzofuran-2-yl, benzofuran-3-yl, thienyl, benzothien-2-yl, benzothien-3-yl, dibenzofuranyl, dibenzothienyl, carbazoyl, benzopyridyl, indolinyl, and fluorenyl, wherein the phenyl, aryl, 9-julolidinyl, or heteroaromatic substituent is the reactive substituent R; an unsubstituted, mono-, di-, or tri-substituted phenyl or aryl group; 9-julolidinyl; and an unsubstituted, mono- or di-substituted<!-- EPO <DP n="12"> --> heteroaromatic group chosen from pyridyl, furanyl, benzofuran-2-yl, benzofuran-3-yl, thienyl, benzothien-2-yl, benzothien-3-yl, dibenzofuranyl, dibenzothienyl, carbazoyl, benzopyridyl, indolinyl, and fluorenyl, wherein each of the phenyl, aryl and heteroaromatic substituents are each independently: hydroxyl, a group -C(=O)R<sub>21</sub>, wherein R<sub>21</sub> is -OR<sub>22</sub>, -N(R<sub>23</sub>)R<sub>24</sub>, piperidino or morpholino, wherein R<sub>22</sub> is allyl, C<sub>1</sub>-C<sub>6</sub> alkyl, phenyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl, phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy(C<sub>2</sub>-C<sub>4</sub>)alkyl or C<sub>1</sub>-C<sub>6</sub> haloalkyl; R<sub>23</sub> and R<sub>24</sub> are each independently C<sub>1</sub>-C<sub>6</sub> alkyl, C<sub>5</sub>-C<sub>7</sub> cycloalkyl, phenyl or substituted phenyl, the phenyl substituents being C<sub>1</sub>-C<sub>6</sub> alkyl or C<sub>1</sub>-C<sub>6</sub> alkoxy, and said halo substituent is chloro or fluoro, aryl, mono(C<sub>1</sub>-C<sub>12</sub>)alkoxyaryl, di(C<sub>1</sub>-C<sub>12</sub>)alkoxyaryl, mono(C<sub>1</sub>-C<sub>12</sub>)alkylaryl, di(C<sub>1</sub>-C<sub>12</sub>)alkylaryl, haloaryl, C<sub>3</sub>-C<sub>7</sub> cycloalkylaryl, C<sub>3</sub>-C<sub>7</sub> cycloalkyl, C<sub>3</sub>-C<sub>7</sub> cycloalkyloxy, C<sub>3</sub>-C<sub>7</sub> cycloalkyloxy(C<sub>1</sub>-C<sub>12</sub>)alkyl, C<sub>3</sub>-C<sub>7</sub> cycloalkyloxy(C<sub>1</sub>-C<sub>12</sub>)alkoxy, aryl(C<sub>1</sub>-C<sub>12</sub>)alkyl, aryl(C<sub>1</sub>-C<sub>12</sub>)alkoxy, aryloxy, aryloxy(C<sub>1</sub>-C<sub>12</sub>)alkyl, aryloxy(C<sub>1</sub>-C<sub>12</sub>)alkoxy, mono- or di(C<sub>1</sub>-C<sub>12</sub>)alkylaryl(C<sub>1</sub>-C<sub>12</sub>)alkyl, mono- or di-(C<sub>1</sub>-C<sub>12</sub>)alkoxyaryl(C<sub>1</sub>-C<sub>12</sub>)alkyl, mono- or di-(C<sub>1</sub>-C<sub>12</sub>)alkylaryl(C<sub>1</sub>-C<sub>12</sub>)alkoxy, mono- or di-(C<sub>1</sub>-C<sub>12</sub>)alkoxyaryl(C<sub>1</sub>-C<sub>12</sub>)alkoxy, amino, mono- or di-(C<sub>1</sub>-C<sub>12</sub>)alkylamino, diarylamino, piperazine, <i>N</i>-(C<sub>1</sub>-C<sub>12</sub>)alkylpiperazino, <i>N</i>-arylpiperazino, aziridino, indolino, piperidino, morpholino, thiomorpholino, tetrahydroquinolino, tetrahydroisoquinolino, pyrrolidyl, C<sub>1</sub>-C<sub>12</sub> alkyl, C<sub>1</sub>-C<sub>12</sub> haloalkyl, C<sub>1</sub>-C<sub>12</sub> alkoxy, mono(C<sub>1</sub>-C<sub>12</sub> )alkoxy(C<sub>1</sub>-C<sub>12</sub> )alkyl, acryloxy, methacryloxy or halogen; an unsubstituted or mono-substituted group chosen from pyrazolyl, imidazolyl, pyrazolinyl, imidazolinyl, pyrrolinyl, phenothiazinyl, phenoxazinyl, phenazinyl, and acridinyl, each of said substituents being C<sub>1</sub>-C<sub>12</sub> alkyl, C<sub>1</sub>-C<sub>12</sub> alkoxy, phenyl, or halogen; a mono-substituted phenyl, said phenyl having a substituent located at the para position, wherein the substituent is: a dicarboxylic acid residue or derivative thereof, a diamine residue or derivative thereof, an amino alcohol residue or derivative thereof, a polyol residue or derivative thereof, -CH<sub>2</sub>-, -(CH<sub>2</sub>)<sub>t</sub>-, or -[O-(CH<sub>2</sub>)<sub>t</sub>]<sub>k</sub>-,<!-- EPO <DP n="13"> --> wherein t is an integer 2, 3, 4, 5 or 6 and k is an integer from 1 to 50, the substituent being connected to an aryl group on another photochromic material; a group represented by one of:
<chemistry id="chem0006" num="0006"><img id="ib0006" file="imgb0006.tif" wi="79" he="19" img-content="chem" img-format="tif"/></chemistry>
wherein each K is -CH<sub>2</sub>- or -O-, and M is -O- or substituted nitrogen, provided that when M is substituted nitrogen, K is -CH<sub>2</sub>-, the substituted nitrogen substituents being hydrogen, C<sub>1</sub>-C<sub>12</sub> alkyl, or C<sub>1</sub>-C<sub>12</sub> acyl, each R<sub>25</sub> being independently chosen for each occurrence from C<sub>1</sub>-C<sub>12</sub> alkyl, C<sub>1</sub>-C<sub>12</sub> alkoxy, hydroxy, and halogen, R<sub>26</sub> and R<sub>27</sub> each being independently hydrogen or C<sub>1</sub>-C<sub>12</sub> alkyl, and u is an integer ranging from 0 to 2; or a group represented by:
<chemistry id="chem0007" num="0007"><img id="ib0007" file="imgb0007.tif" wi="29" he="14" img-content="chem" img-format="tif"/></chemistry>
wherein R<sub>28</sub> is hydrogen or C<sub>1</sub>-C<sub>12</sub> alkyl, and R<sub>29</sub> is an unsubstituted, mono-, or di-substituted group chosen from naphthyl, phenyl, furanyl, and thienyl, wherein the substituents are C<sub>1</sub>-C<sub>12</sub> alkyl, C<sub>1</sub>-C<sub>12</sub> alkoxy, or halogen; or B and B' taken together form one of a fluoren-9-ylidene, mono-, or di- substituted fluoren-9-ylidene, each of said fluoren-9-ylidene substituents being independently chosen from C<sub>1</sub>-C<sub>12</sub> alkyl, C<sub>1</sub>-C<sub>12</sub> alkoxy, and halogen; provided that the photochromic material comprises at least one reactive substituent R.</li>
</ol></p>
<p id="p0009" num="0009">Other embodiments relate to methods of making the ophthalmic devices of the invention.</p>
<heading id="h0003"><b>BRIEF DESCRIPTION OF THE DRAWINGS</b></heading><!-- EPO <DP n="14"> -->
<p id="p0010" num="0010">Various non-limiting embodiments of the invention disclosed herein will be better understood when read in conjunction with the drawings, in which: <figref idref="f0001">Figs. 1</figref> and <figref idref="f0002">2</figref> are schematic diagrams of reaction schemes for synthesizing photochromic materials according to various non-limiting embodiments disclosed herein.</p>
<heading id="h0004"><b>DETAILED DESCRIPTION</b></heading>
<p id="p0011" num="0011">As used in this specification and the appended claims, the articles "a," "an," and "the" include plural referents unless expressly and unequivocally limited to one referent.</p>
<p id="p0012" num="0012">Additionally, for the purposes ofthis specification, unless otherwise indicated, all numbers expressing quantities of ingredients, reaction conditions, and other properties or parameters used in the specification are to be understood as being modified in all instances by the term "about." Accordingly, unless otherwise indicated, it should be understood that the numerical parameters set forth in the following specification and attached claims are approximations. At the very least, numerical parameters should be read in light of the number of reported significant digits and the application of ordinary rounding techniques.</p>
<p id="p0013" num="0013">Further, while the numerical ranges and parameters setting forth the broad scope of the invention are approximations as discussed above, the numerical values set forth in the Examples section are reported as precisely as possible. It should be understood, however, that such numerical values inherently contain certain errors resulting from the measurement equipment and/or measurement technique.</p>
<p id="p0014" num="0014">As used herein in the terms "lens" and "ophthalmic device" refer to devices that reside in or on the eye. These devices can provide optical correction, wound care, drug delivery, diagnostic functionality, cosmetic enhancement or effect or a combination of these properties. The terms lens and ophthalmic device includes but are not limited to soft contact lenses, hard contact lenses, intraocular lenses, overlay lenses, ocular inserts, and optical inserts.<!-- EPO <DP n="15"> --></p>
<p id="p0015" num="0015">As used herein, the term "photochromic" means having an absorption spectrum for at least visible radiation that varies in response to absorption of at least actinic radiation. Further, as used herein, the term "photochromic material" means any substance that is adapted to display photochromic properties, i.e., adapted to have an absorption spectrum for at least visible radiation that varies in response to absorption of at least actinic radiation.</p>
<p id="p0016" num="0016">The ophtalmic device of the invention comprises a photochromic material comprising a photochromic naphthopyran, and a reactive substituent bonded to the photochromic naphthopyran, wherein the reactive substituent is represented by one of:
<ul id="ul0003" list-style="none" compact="compact">
<li>-A-D-E-G-J;</li>
<li>-G-E-G-J;</li>
<li>-D-E-G-J;</li>
<li>-A-D-J;</li>
<li>-D-G-J; and</li>
<li>-D-J.</li>
</ul></p>
<p id="p0017" num="0017">-A- is selected from -C(=O)-, -OC(=O)-,-NHC(=O)-, and -CH<sub>2</sub>-.</p>
<p id="p0018" num="0018">-D- is selected from diamine residues or derivatives thereof, wherein a first amine nitrogen of said diamine residue forms a bond with -A- or the photochromic naphthopyran, and a second amine nitrogen of said diamine residue forms a bond with -E-, -G-, or -J and amino alcohol residues or derivatives thereor, wherein an amine nitrogen of said amino alcohol residue forms a bond with -A- or the photochromic naphthopyran, and an alcohol oxygen of said amino alcohol residue forms a bond with -E-, -G-, or -J, or, alternatively, the amine nitrogen of said amino alcohol residue forms a bond with -E-, -G-, or -J, and the<!-- EPO <DP n="16"> --> alcohol oxygen of said amino alcohol residue forms a bond with -A- or the photochromic naphthopyran.</p>
<p id="p0019" num="0019">In embodiments where -D- is a diamine residue or a derivative thereof, said diamine residue is selected from aliphatic diamine residues, cyclo aliphatic diamine residues, diazacycloalkane residues, azacyclo aliphatic amine residues, diazacrown ether residues, and aromatic diamine residues. Non-limiting examples of diamine residues from which -D- may be chosen include diamine residues represented by any of the following structures:
<chemistry id="chem0008" num="0008"><img id="ib0008" file="imgb0008.tif" wi="116" he="47" img-content="chem" img-format="tif"/></chemistry></p>
<p id="p0020" num="0020">In other embodiments where -D- is an amino alcohol residue or a derivative thereof, said amino alcohol residue is selected from aliphatic amino alcohol residues, cyclo aliphatic amino alcohol residues, azacyclo aliphatic alcohol residues, dazacyclo aliphatic alcohol residues, and aromatic amino alcohol residues. Non-limiting examples of amino alcohol residues from which -D- may be chosen include amino alcohol residues represented by any of the following structures:<!-- EPO <DP n="17"> -->
<chemistry id="chem0009" num="0009"><img id="ib0009" file="imgb0009.tif" wi="121" he="59" img-content="chem" img-format="tif"/></chemistry></p>
<p id="p0021" num="0021">-E- is selected from dicarboxylic acid residues or derivatives thereof, wherein a first carbonyl group of said dicarboxylic acid residue forms a bond with -G- or -D-, and a second carbonyl group of said dicarboxylic acid residue forms a bond with -G-. The dicarboxylic acid residues are selected from aliphatic dicarboxylic acid residues, cycloaliphatic dicarboxylic acid residues, and aromatic dicarboxylic acid residues. Non-limiting examples of dicarboxylic acid residues from which -E- may be chosen include dicarboxylic residues represented by any of the following structures:
<chemistry id="chem0010" num="0010"><img id="ib0010" file="imgb0010.tif" wi="120" he="22" img-content="chem" img-format="tif"/></chemistry></p>
<p id="p0022" num="0022">Each -G- is independently selected from polyalkyleneglycol residues and polyol residues and derivatives thereof, wherein a first polyol oxygen of said polyol residue forms a bond with -E-, -D-, or the photochromic naphthopyran, and a second polyol oxygen of said polyol residue forms a bond with -E- or -J.<!-- EPO <DP n="18"> --> The polyalkyleneglycol residues have the structure: -[(OC<sub>2</sub>H<sub>4</sub>)<sub>x</sub>(OC<sub>3</sub>H<sub>6</sub>)<sub>y</sub>(OC<sub>4</sub>H<sub>8</sub>)<sub>z</sub>]-O-, wherein x, y, and z, are each independently a number between 0 and 50, and the sum of x, y, and z ranges from 1 to 50. The polyol residues are selected from aliphatic polyol residues, cyclo aliphatic polyol residues, and aromatic polyol residues.</p>
<p id="p0023" num="0023">As discussed above, -G- can be a residue of a polyol, which is defined herein to include hydroxy-containing carbohydrates, such as those set forth in <patcit id="pcit0001" dnum="US6555028B"><text>U.S. Patent No. 6,555,028</text></patcit> at col. 7, line 56 to col. 8, line 17. The polyol residue may be formed, for example and without limitation herein, by the reaction of one or more of the polyol hydroxyl groups with a precursor of -E- or -D-, such as a carboxylic acid or a methylene halide, a precursor of a polyalkoxylated group, such as polyalkylene glycol, or a hydroxyl substituent of the indenofused naphthopyran. The polyol may be represented by U-(OH)<sub>a</sub> and the residue of the polyol may be represented by the formula -O-U-(OH)<sub>a-1</sub>, wherein U is the backbone or main chain of the polyhydroxy compound and "a" is at least 2.</p>
<p id="p0024" num="0024">Examples of polyols from which -G- may be formed include polyols having at least 2 hydroxy groups such as (a) low molecular weight polyols having an average molecular weight less than 500, such as, but not limited to, those set forth in <patcit id="pcit0002" dnum="US6555028B"><text>U.S. Patent No. 6,555,028</text></patcit> at col. 4, lines 48-50, and col. 4, line 55 to col. 6, line 5; (b) polyester polyols, such as, but not limited to, those set forth in <patcit id="pcit0003" dnum="US6555028B"><text>U.S. Patent No. 6,555,028</text></patcit> at col. 5, lines 7-33; (c) polyether polyols, such as but not limited to those set forth in <patcit id="pcit0004" dnum="US6555028B"><text>U.S. Patent No. 6,555,028</text></patcit> at col. 5, lines 34-50; (d) amide-containing polyols, such as, but not limited to, those set forth in <patcit id="pcit0005" dnum="US6555028B"><text>U.S. Patent No. 6,555,028</text></patcit> at col. 5, lines 51-62; (e) epoxy polyols, such as, but not limited to, those set forth in <patcit id="pcit0006" dnum="US6555028B"><text>U.S. Patent No. 6,555,028</text></patcit> at col. 5 line 63 to<!-- EPO <DP n="19"> --> col. 6, line 3; (f) polyhydric polyvinyl alcohols, such as, but not limited to, those set forth in <patcit id="pcit0007" dnum="US6555028B"><text>U.S. Patent No. 6,555,028</text></patcit> at col. 6, lines 4-12; (g) urethane polyols, such as, but not limited to those set forth in <patcit id="pcit0008" dnum="US6555028B"><text>U.S. Patent No. 6,555,028</text></patcit> at col. 6, lines 13-43; (h) polyacrylic polyols, such as, but not limited to those set forth in <patcit id="pcit0009" dnum="US6555028B"><text>U.S. Patent No. 6,555,028</text></patcit> at col. 6, lines 43 to col. 7, line 40; (i) polycarbonate polyols, such as, but not limited to, those set forth in <patcit id="pcit0010" dnum="US6555028B"><text>U.S. Patent No. 6,555,028</text></patcit> at col. 7, lines 41-55; and (j) mixtures of such polyols.</p>
<p id="p0025" num="0025">-J is a group comprising a reactive moiety or residue thereof, said group comprising acryl, methacryl, crotyl, 2-(methacryloxy) ethylcarbamyl, 2-(methacryloxy)ethoxycarbonyl, 4-vinylphenyl, vinyl, 1-chlorovinyl, or epoxy; or -J is hydrogen, provided that if -J is hydrogen, -J is bonded to an oxygen of group -D- or -G-, forming a reactive moiety.<br/>
As used herein, the term "photochromic naphthopyran" is defined as a photochromic compound having a core naphthopyran substructure that displays photochromic properties. For example, according to various non-limiting embodiments, the photochromic naphthopyran is capable of transforming between a first "closed" form and a second "open" form in response to the absorption of actinic radiation. Examples of core naphthopyran substructures are presented below:
<chemistry id="chem0011" num="0011"><img id="ib0011" file="imgb0011.tif" wi="127" he="36" img-content="chem" img-format="tif"/></chemistry><!-- EPO <DP n="20"> --></p>
<p id="p0026" num="0026">According to various non-limiting embodiments disclosed herein, the groups B and B' (shown above) are part of the photochromic naphthopyran core substructure. Without intending to be limited by any particular theory, it is believed that the B and B' groups may help stabilize the open form of the core naphthopyran substructure by being in conjugation with the pi-system of the open form of the core naphthopyran substructure. Suitable structures for B and/or B' have at least one pi-bond that is in conjugation with the pi-system of the open form of the core naphthopyran substructure, for example, but not limited to, a substituted or unsubstituted aryl ring (e.g., a substituted or unsubstituted phenyl ring or naphthyl ring), and substituted or unsubstituted heteroaromatic ring structures. Various non-limiting examples for structure B and/or B' are discussed in detail hereinbelow.</p>
<p id="p0027" num="0027">Photochromic naphthopyrans that are suitable for use in conjunction with various non-limiting embodiments disclosed herein are substituted 2H-naphtho[1,2-b]pyrans, substituted 3H-naphtho[2,1-b]pyrans, substituted indeno[2',3':3,4]naphtho[1,2-b]pyrans, substituted indeno[1',2':4,3]naphtho[2,1-b]pyrans, and mixtures thereof. Photochromic naphthopyrans having these structures are shown below in structures I through 4, respectively.<!-- EPO <DP n="21"> -->
<chemistry id="chem0012" num="0012"><img id="ib0012" file="imgb0012.tif" wi="122" he="38" img-content="chem" img-format="tif"/></chemistry>
<chemistry id="chem0013" num="0013"><img id="ib0013" file="imgb0013.tif" wi="138" he="52" img-content="chem" img-format="tif"/></chemistry></p>
<p id="p0028" num="0028">As discussed above, the photochromic materials comprise a reactive substituent. As used herein, the term "reactive substituent" means an arrangement of atoms, wherein a portion of the arrangement comprises a reactive moiety or residue thereof. The reactive substituent further comprises a linking group connecting the reactive moiety to the photochromic naphthopyran. As used herein, the term "moiety" means a part or portion of an organic molecule that has a characteristic chemical property. As used herein, the term "reactive moiety" means a part or portion of an organic molecule that may react to form one or more covalent bonds with an intermediate in a polymerization reaction, or with a polymer into which it has been incorporated. As used herein, the phrase "intermediate in the polymerization reaction" means any combination of two or more host monomer<!-- EPO <DP n="22"> --> units that are capable of reacting to form one or more bonds to additional host monomer unit(s) to continue a polymerization reaction or, alternatively, reacting with a reactive moiety of the reactive substituent on the photochromic material. For example, in one non-limiting embodiment the reactive moiety may react as a co-monomer in the polymerization reaction. Alternatively, but not limiting herein, the reactive moiety may react with the intermediate as a nucleophile or electrophile. As used herein, the term "host monomer or oligomer" means the monomeric or oligomeric material(s) into which the photochromic materials of the present disclosure may be incorporated. As used herein, the terms "oligomer" or "oligomeric material" refer to a combination of two or more monomer units that are capable of reacting with an additional monomer unit(s). As used herein, the term "linking group" means one or more group(s) or chain(s) of atoms that connect the reactive moiety to the photochromic naphthopyran. As used herein, the term "residue of a reactive moiety" means that which remains after a reactive moiety has been reacted with either a protecting group or an intermediate in a polymerization reaction. As used herein, the term "protecting group" means a group of atoms removably bonded to the reactive moiety that prevents the reactive moiety from participating in a reaction until the group is removed.</p>
<p id="p0029" num="0029">In one non-limiting embodiment, the reactive moiety comprises a polymerizable moiety. As used herein, the term "polymerizable moiety" means a part or portion of an organic molecule that can participate as a co-monomer in a polymerization reaction of a host monomer or oligomer. In another non-limiting embodiment, the reactive moiety comprises a nucleophilic moiety that reacts to form a bond with an electrophilic moiety on either the intermediate in the polymerization reaction or the host polymer. Alternatively, in another non-limiting embodiment, the reactive moiety comprises an electrophilic moiety that reacts to form a bond with a nucleophilic moiety on either the intermediate in the polymerization reaction or the host polymer. As used herein, the term "nucleophilic moiety" means an atom or grouping of atoms that is electron rich. As used herein, the term "electrophilic<!-- EPO <DP n="23"> --> moiety" means an atom or grouping of atoms that is electron poor. It is appreciated by one skilled in the art that nucleophilic moieties can react with electrophilic moieties, for example to form a covalent bond therebetween.</p>
<p id="p0030" num="0030">As discussed above, the ophthalmic devices of the present invention comprise a photochromic naphthopyran and a reactive substituent bonded to the photochromic naphthopyran. The reactive substituent may be bonded to the photochronaic naphthopyran at a variety of positions on the photochromic naphthopyran. Referring to the numbering scheme associated with structures 1, 2, 3, and 4 above, according to certain non-limiting embodiments, a reactive substituent(s) may be attached to the naphthopyran as follows. For structures 1 or 2, a reactive substituent may be bonded to the naphthopyran at any of the positions numbered 5 through 10. For structures 3 or 4, a reactive substituent may be bonded to the indeno-fused naphthopyran at any of the positions numbered 5 through 13. In addition, for structures 1, 2, 3, and 4, a reactive substituent may additionally or alternatively be bonded to group B and/or group B'.</p>
<p id="p0031" num="0031">For example, according to various non-limiting embodiments disclosed herein wherein the photochromic naphthopyran comprises a 2H-naphtho[1,2-b]pyran or a 3H-naphtho[2,1-b]pyran, structures 1 or 2 respectively, a reactive substituent may be bonded to the photochromic naphthopyran by replacing a hydrogen on the rings of the naphtho-portion of the photochromic naphthopyran with a reactive substituent. Alternatively or in addition, a reactive substituent may be bonded to photochromic naphthopyran 1 or 2 by replacing a hydrogen on the B and/or B' groups of the photochromic naphthopyran with a reactive substituent. According to other non-limiting embodiments, wherein the photochromic naphthopyran comprises an indeno[2',3':3,4] naphtho[1,2-b]pyran or an indeno[1',2':4,3]naphtho [2,1-b]pyran, structures 3 or 4 respectively, a reactive substituent may be bonded to the photochromic naphthopyran by replacing a hydrogen on the rings of the indeno-fused naphtho-portion of the photochromic naphthopyran with a reactive substituent. Alternatively or in addition, a reactive<!-- EPO <DP n="24"> --> substituent may be bonded to photochromic naphthopyran 3 or 4 by replacing a hydrogen on the B and/or B' groups of the photochromic naphthopyran with a reactive substituent.</p>
<p id="p0032" num="0032">As discussed above, according to various non-limiting embodiments disclosed herein, the reactive substituent may be represented by one of the following groupings of structures:
<ul id="ul0004" list-style="dash" compact="compact">
<li>A-D-E-G-J;</li>
<li>G-E-G-J;</li>
<li>D-E-G-J;</li>
<li>A-D-J;</li>
<li>D-G-J; and</li>
<li>D-J;</li>
</ul>
wherein the groups -A-, -D-, -E-, -G-, and J are as set forth above. The -J group may comprise a moiety capable of reacting with an intermediate in the polymerization reaction or the host monomer. For example, in one non-limiting embodiment, the -J group comprises a polymerizable moiety that can react as a co-monomer in an addition-type polymerization reaction or a condensation-type polymerization reaction of the host monomer, resulting in a co-polymer of the photochromic material and the host polymer. As used herein, the term "addition-type polymerization reaction" means a polymerization reaction in which the resultant polymer contains all of the atoms originally present in the monomer units. As used herein, the term "condensation-type polymerization reaction" means a polymerization reaction in which the resultant polymer does not contain all of the atoms originally present in the monomer units. As used herein, the term "host polymer" means the polymer that results from polymerization of the host monomer. For example, in certain non-limiting embodiments, the host polymer may include polymers that may contain a<!-- EPO <DP n="25"> --> functionality that can react to form a bond with a reactive substituent on the photochromic material. In other non-limiting embodiments, the host polymer may be the polymer in which the photochromic material is incorporated within or otherwise co-polymerized with or bonded to. In another non-limiting embodiment, the -J group comprises a nucleophilic or electrophilic moiety that can react with an electrophilic or nucleophilic moiety, respectively, on an intermediate in the polymerization reaction or on the host polymer. In another non-limiting embodiment, -J comprises a hydrogen, provided that when -J is hydrogen, -J is bonded to an oxygen of group -D- or -G-, forming a reactive moiety, i.e., a hydroxyl group.</p>
<p id="p0033" num="0033">When -J is bonded to an oxygen or a nitrogen, reactive moieties suitable for use as -J are acryl, methacryl, crotyl, 2-(methacryloxy)ethylcarbamyl, 2-(methacryloxy) ethoxycarbonyl, 4-vinylphenyl, vinyl, 1-chlorovinyl, and epoxy. Structures corresponding to such reactive moieties are shown below:
<chemistry id="chem0014" num="0014"><img id="ib0014" file="imgb0014.tif" wi="127" he="68" img-content="chem" img-format="tif"/></chemistry></p>
<p id="p0034" num="0034">Alternatively, -J may be hydrogen, provided that if -J is hydrogen, -J is bonded to an oxygen, such that the linkage is terminated by a reactive hydroxyl group, wherein the hydroxyl group comprises the reactive moiety.<!-- EPO <DP n="26"> --></p>
<p id="p0035" num="0035">As indicated above, the reactive substituent according to various non-limiting embodiments disclosed herein comprises one or more groups -A-, -D-, -E-, and -G- which connect the group -J to the photochromic naphthopyran. As used herein, linking groups, as defined above, comprise one or more of the groups -A-, -D-, -E-, and -G-. That is, various combinations of groups -A-, -D-, -E-, and -G- can form the linking group portion of the reactive substituent. As defined herein, the term "group" or "groups" means an arrangement of one or more atoms.</p>
<p id="p0036" num="0036">The structure of the linking groups of the various non-limiting embodiments will now be discussed in detail. As discussed above, the linking group portion of the reactive substituent comprises various combinations of the groups -A-, -D-, -E-, and -G-. Specifically, in certain non-limiting embodiments, the linking group portion of the reactive substituent comprises: -A-D-E-G-, -G-E-G-, -D-E-G-, -A-D-, -D-G-, or -D-, wherein a first group of the linking group is bonded to the photochromic naphthopyran at a position as set forth above and a second group of the linking group is bonded to the -J group as discussed in detail below. It will be understood by one having skill in the art that linking groups comprising various combinations of the groups -A-, -D-, -E-, and -G- can be synthesized by a variety of methods and the bond connections discussed below are for illustration purposes only and are in no way intended to imply a particular required or preferred synthetic approach to making the reactive substituent.</p>
<p id="p0037" num="0037">The connections between the various groups, i.e., -A-, D-, -E-, and -G-, according to various non-limiting embodiments will now be discussed. In one non-limiting embodiment, the -A- group forms a bond with the photochromic naphthopyran and a bond with the -D- group. According to this non-limiting embodiment, the A-D bond may be a covalent bond between the carbonyl or methylene carbon of the -A- group and a nitrogen or oxygen of the diamine residue or amino alcohol residue of the -D- group. For example, according to various non-limiting embodiments, when -A- comprises a carbonyl carbon, the A-D bond may be an amide or an ester bond. In another non-limiting embodiment, when -A-comprises<!-- EPO <DP n="27"> --> a methylene carbon, the A-D bond may be an amine or ether bond. As used herein, the term "methylene" means an organic group having the structure -CH<sub>2</sub>-.</p>
<p id="p0038" num="0038">In other non-limiting embodiments, the -D- group forms a bond with an -A-group (as described above) or the photochromic naphthopyran and a bond with an -E- or -G- group. According to one non-limiting embodiment, the D-E bond may be a covalent bond between a nitrogen or oxygen of the diamine residue or amino alcohol residue of the -D- group and the carbonyl carbon of one of the carboxylic acid residues of the -E- group, forming an amide or ester bond therebetween. According to another non-limiting embodiment, the D-G bond may be a covalent bond wherein the nitrogen or oxygen of the diamine residue or amino alcohol residue of the -D- group replaces a terminal oxygen residue on the polyol residue or polyalkyleneglycol residue of the -G- group, thereby forming an amine or ether bond.</p>
<p id="p0039" num="0039">In other non-limiting embodiments, the -E- group forms a bond with a -D- group (as described above) or a first -G- group and a bond with a second -G- group. According to these non-limiting embodiments, the E-G bond may be a covalent bond between a terminal oxygen residue on the polyol residue or polyalkyleneglycol residue of the -G- group and the carbonyl carbon of one of the carboxylic acid residues of the -E- group, forming an ester bond therebetween.</p>
<p id="p0040" num="0040">As previously discussed, the physical and chemical nature of linking groups may have an effect on the overall properties of the photochromic material. For example, in one non-limiting embodiment, the linking groups of the reactive substituent may have a hydrophilic nature such that the photochromic material may be more readily soluble in hydrophilic or polar host monomers. In another non-limiting embodiment, the linking groups of the reactive substituent may have a lipophilic nature such that the photochromic material may be more readily soluble in lipophilic or nonpolar host monomers.<!-- EPO <DP n="28"> --></p>
<p id="p0041" num="0041">The linking groups according to certain non-limiting embodiments of the present disclosure may also be of a uniform length and/or composition such that the resultant photochromic material may be more readily purified, when compared to a photochromic material having linking groups of non-uniform length. For example, in certain non-limiting embodiments where the linking group is of a uniform length and/or composition, the resultant photochromic material may be crystalline and therefore may be purified by recrystallization. In other non-limiting embodiments, where the linking group is of a uniform length and/or composition, the resultant photochromic material may be readily purified by chromatographic methods or other methods of purification known to one skilled in the art. For example, in one non-limiting embodiment set forth in Example 3, the photochromic material (i.e., 3-phenyl-3-(4-morpholinophenyl)-6-methoxy-7-(4-(2-methacryloxyethyl)carbamylpiperizin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran) comprises a photochromic naphthopyran with a reactive substituent corresponding to -D-J. According to this non-limiting embodiment, the photochromic material may be purified by crystallization with an ethyl acetate/hexanes mixture to yield purple-tinted crystals. In another non-limiting embodiment set forth in Example 5, the photochromic material (i.e., 3-phenyl-3-(4-(4-(2-methacryloxyethyl)carbamylpiperazin-1-yl)phenyl)-6,11-dimethoxy-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran) comprises a photochromic naphthopyran with a reactive substituent corresponding to -D-J. According to this non-limiting embodiment, the photochromic material may be purified by silica gel chromatography to yield a green expanded foam solid. In other non-limiting embodiments, an intermediate in the synthesis of the photochromic material may be readily purified by recrystallization methods, chromatographic methods or other methods of purification know to one skilled in the art.</p>
<p id="p0042" num="0042">Bonding between the various linking group(s) and the group -J will now be discussed. According to various non-limiting embodiments disclosed herein, the group -J may be bonded to the linking group by a G-J bond or a D-J bond. In certain<!-- EPO <DP n="29"> --> non-limiting embodiments where the reactive moiety -J is bonded to the linking group by a G-J bond, the G-J bond may have many possible structures. For example, when -J is acryl, methacryl, or crotyl, the G-J bond may be an ester bond, that is, a terminal oxygen residue of the -G- group bonds with the carbonyl of the -J group. Alternatively, when -J is 2-(methacryloxy)ethylcarbamyl or 2-(methacryloxy)ethoxycarbonyl, the G-J bond may be a carbamate and carbonate bond, respectively, where a terminal oxygen residue of the -G- group bonds with the carbonyl of the ethyl carbamyl or ethoxycarbonyl portion of the -J group. Further, when -J is 4-vinylphenyl, vinyl, 1-chlorovinyl or epoxy, the G-J bond may be an ether bond between a terminal oxygen residue of the -G- group and the carbon of the -J group. In certain non-limiting embodiments, the -J group may be a hydrogen, such that the G-J bond is an oxygen-hydrogen bond resulting in a reactive moiety, i.e., a hydroxyl group, on the linking group.</p>
<p id="p0043" num="0043">In other non-limiting embodiments where the reactive moiety -J is bonded to the linking group by a D-J bond, the D-J bond may have many possible structures. For example, when -J is acryl, methacryl, or crotyl, the D-J bond may be an ester or amide bond, that is, an alcohol oxygen or an amine nitrogen on the amino alcohol residue or diamine residue of the -D- group bonds with the carbonyl of the -J group. Alternatively, when -J is 2-(methacryloxy)ethylcarbamyl or 2-(methacryloxy)ethoxycarbonyl, the D-J bond may be a urea, carbamate, or carbonate bond, where an amine nitrogen on the diamine residue or amino alcohol residue, or an alcohol oxygen on the amino alcohol residue of the -D- group bonds with the carbonyl of the ethylcarbamyl or ethoxycarbonyl portion of the -J- group. Further, when -J is 4-vinylphenyl, vinyl, 1-chlorovinyl or epoxy, the D-J may be an amine or ether bond between an amine nitrogen or the alcohol oxygen, respectively, of the -D- group and the carbon of the -J group. In certain non-limiting embodiments, when -D- is an amino alcohol, the -J group may be a hydrogen bonded to the oxygen of the amino alcohol residue, such that the D-J bond is an oxygen-hydrogen bond, resulting in a reactive moiety, i.e., a hydroxyl group, on the linking group.<!-- EPO <DP n="30"> --></p>
<p id="p0044" num="0044">According to various non-limiting embodiments disclosed herein, wherein -J is acryl, methacryl, 2-(methacryloxy)ethylcarbamyl or epoxy, -J may be attached to the -D- or -G- group of the linking group by condensation of -D- or -G- with acryloyl chloride, methacryloyl chloride, 2-isocyanatoethyl methacrylate or epichlorohydrin, respectively.<!-- EPO <DP n="31"> --></p>
<p id="p0045" num="0045">The photochromic material comprising at least one reactive substituent can be represented by the following structures I through IV, or a mixture thereof:<!-- EPO <DP n="32"> -->
<chemistry id="chem0015" num="0015"><img id="ib0015" file="imgb0015.tif" wi="111" he="44" img-content="chem" img-format="tif"/></chemistry>
<chemistry id="chem0016" num="0016"><img id="ib0016" file="imgb0016.tif" wi="130" he="53" img-content="chem" img-format="tif"/></chemistry></p>
<p id="p0046" num="0046">Referring to structure II above, group R<sub>1</sub> is selected from the reactive substituent R; hydrogen, hydroxy, C<sub>1</sub>-C<sub>3</sub> alkyl; and the group, -C(=O)W, wherein W is -OR<sub>7</sub>, -N(R<sub>8</sub>)R<sub>9</sub>, piperidino or morpholino, wherein R<sub>7</sub> is allyl, C<sub>1</sub>-C<sub>6</sub> alkyl, phenyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl, phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy(C<sub>2</sub>-C<sub>4</sub>)alkyl or C<sub>1</sub>-C<sub>6</sub> haloalkyl, R<sub>8</sub> and R<sub>9</sub> are each independently chosen from C<sub>1</sub>-C<sub>6</sub> alkyl, C<sub>5</sub>-C<sub>7</sub> cyloalkyl, phenyl, mono-substituted phenyl, and di-substituted phenyl, said phenyl substituents are C<sub>1</sub>-C<sub>6</sub> alkyl or C<sub>1</sub>-C<sub>6</sub> alkoxy, and said halo substituent are chloro or fluoro.<!-- EPO <DP n="33"> --></p>
<p id="p0047" num="0047">Referring now to structure I above, group R<sub>1</sub>' is selected from the reactive substituent R; hydrogen; hydroxy; C<sub>1</sub>-C<sub>3</sub> alkyl; and the group -C(=O)W, wherein W is -OR<sub>7</sub>, -N(R<sub>8</sub>)R<sub>9</sub>, piperidino or morpholino, wherein R<sub>7</sub> is allyl, C<sub>1</sub>-C<sub>6</sub> alkyl, phenyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl, phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy(C<sub>2</sub>-C<sub>4</sub>)alkyl or C<sub>1</sub>-C<sub>6</sub> haloalkyl, and R<sub>8</sub> and R<sub>9</sub> are each independently chosen from C<sub>1</sub>-C<sub>6</sub> alkyl, C<sub>5</sub>-C<sub>7</sub> cycloalkyl, phenyl, mono-substituted phenyl, and di-substituted phenyl, wherein said phenyl substituents are C<sub>1</sub>-C<sub>6</sub> alkyl or C<sub>1</sub>-C<sub>6</sub> alkoxy, and said halo substituent are chloro or fluoro.</p>
<p id="p0048" num="0048">Referring now to structures I and II above, group R<sub>2</sub> is selected from the reactive substituent R; hydrogen; C<sub>1</sub>-C<sub>6</sub> alkyl; C<sub>3</sub>-C<sub>7</sub> cycloalkyl; substituted or unsubstituted phenyl; and -OR<sub>10</sub>; or -OC(=O)R<sub>10</sub>, wherein R<sub>10</sub> is hydrogen, C<sub>1</sub>-C<sub>6</sub> alkyl, phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, (C<sub>1</sub>-C<sub>6</sub>)alkoxy(C<sub>2</sub>-C<sub>4</sub>)alkyl, C<sub>3</sub>-C<sub>7</sub> cycloalkyl, or mono(C<sub>1</sub>-C<sub>4</sub>)alkyl substituted C<sub>3</sub>-C<sub>7</sub> cycloalkyl, and said phenyl substituents are C<sub>1</sub>-C<sub>6</sub> alkyl or C<sub>1</sub>-C<sub>6</sub> alkoxy.</p>
<p id="p0049" num="0049">Referring now to structures I, II, III, and IV above, examples of structures for each R<sub>3</sub> and each R<sub>4</sub> independently include: the reactive substituent R; hydrogen; fluoro; chloro; C<sub>1</sub>-C<sub>6</sub> alkyl; C<sub>3</sub>-C<sub>7</sub> cycloalkyl; substituted or unsubstituted phenyl; -OR<sub>10</sub>; or -OC(=O)R<sub>10</sub>, wherein R<sub>10</sub> is hydrogen, C<sub>1</sub>-C<sub>6</sub> alkyl, phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, (C<sub>1</sub>-C<sub>6</sub>)alkoxy(C<sub>2</sub>-C<sub>4</sub>)alkyl, C<sub>3</sub>-C<sub>7</sub> cycloalkyl, or mono(C<sub>1</sub>-C<sub>4</sub>)alkyl substituted C<sub>3</sub>-C<sub>7</sub> cycloalkyl, and said phenyl substituents are C<sub>1</sub>-C<sub>6</sub> alkyl or C<sub>1</sub>-C<sub>6</sub> alkoxy; and a mono-substituted phenyl, said phenyl having a substituent located at the para position, wherein the substituent is: a dicarboxylic acid residue or<!-- EPO <DP n="34"> --> derivative thereof, a diamine residue or derivative thereof, a amino alcohol residue or derivative thereof, a polyol residue or derivative thereof, -CH<sub>2</sub>-, -(CH<sub>2</sub>)<sub>t</sub>-, or -[O-(CH<sub>2</sub>)<sub>t</sub>]<sub>k</sub>-, wherein t is an integer 2, 3, 4, 5, or 6 and k is an integer from 1 to 50, the substituent being connected to an aryl group on another photochromic material. For structures I, II, III, and IV, n is an integer from 1 to 4.</p>
<p id="p0050" num="0050">Other examples of structures for each R<sub>3</sub> and each R<sub>4</sub> include a nitrogen containing group, wherein the nitrogen containing group may be N(R<sub>11</sub>)R<sub>12</sub>, wherein R<sub>11</sub> and R<sub>12</sub> are each independently hydrogen, C<sub>1</sub>-C<sub>8</sub> alkyl, phenyl, naphthyl, furanyl, benzofuran-2-yl, benzofuran-3-yl, thienyl, benzothien-2-yl, benzothien-3-yl, dibenzofuranyl, dibenzothienyl, benzopyridyl, fluorenyl, C<sub>1</sub>-C<sub>8</sub> alkylaryl, C<sub>3</sub>-C<sub>20</sub> cycloalkyl, C<sub>4</sub>-C<sub>20</sub> bicycloalkyl, C<sub>5</sub>-C<sub>20</sub> tricycloalkyl or C<sub>1</sub>-C<sub>20</sub> alkoxyalkyl, wherein said aryl group is phenyl or naphthyl, or R<sub>11</sub> and R<sub>12</sub> come together with the nitrogen atom to form a C<sub>3</sub>-C<sub>20</sub> hetero-bicycloalkyl ring or a C<sub>4</sub>-C<sub>20</sub> hetero-tricycloalkyl ring; a nitrogen containing ring represented by the following graphic formula VA:
<chemistry id="chem0017" num="0017"><img id="ib0017" file="imgb0017.tif" wi="53" he="27" img-content="chem" img-format="tif"/></chemistry>
wherein each Y is independently for each occurrence -CH<sub>2</sub>-, -CH(R<sub>13</sub>)-, -C(R<sub>13</sub>)<sub>2</sub>-, -CH(aryl)-, -C(aryl)<sub>2</sub>-, or -C(R<sub>13</sub>)(aryl)-, and Z is -Y-, -O-, -S-, -S(O)-, -SO<sub>2</sub>-, -NH-, -N(R<sub>13</sub>)-, or -N(aryl)-, wherein each R<sub>13</sub> is independently C<sub>1</sub>-C<sub>6</sub> alkyl, each aryl is independently phenyl or naphthyl, m is an integer 1, 2 or 3, and p is an integer 0,1, 2, or 3 and when p is 0, Z is Y; a group represented by one of the following graphic formulae VB or VC:<!-- EPO <DP n="35"> -->
<chemistry id="chem0018" num="0018"><img id="ib0018" file="imgb0018.tif" wi="98" he="30" img-content="chem" img-format="tif"/></chemistry>
wherein R<sub>15</sub>, R<sub>16</sub>, and R<sub>17</sub> are each independently hydrogen, C<sub>1</sub>-C<sub>6</sub> alkyl, phenyl, or naphthyl, or R<sub>15</sub> and R<sub>16</sub> together may form a ring of 5 to 8 carbon atoms and each R<sub>14</sub> is independently for each occurrence C<sub>1</sub>-C<sub>6</sub> alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy, fluoro or chloro and p is an integer 0, 1, 2, or 3; unsubstituted, mono-, or di-substituted C<sub>4</sub>-C<sub>18</sub> spirobicyclic amine; and unsubstituted, mono-, or di-substituted C<sub>4</sub>-C<sub>18</sub> spirotricyclic amine; wherein said spirobicyclic and spirotricyclic amine substituents are independently for each occurrence aryl, C<sub>1</sub>-C<sub>6</sub> alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy, or phenyl(C<sub>1</sub>-C<sub>6</sub>)alkyl.</p>
<p id="p0051" num="0051">Alternatively, an R<sub>3</sub> group in the 6-position and an R<sub>3</sub> group in the 7-position, according to the numbering set forth in structures <b>1, 2, 3,</b> and <b>4</b> above, together form a group represented by graphic formulae VD or VE:
<chemistry id="chem0019" num="0019"><img id="ib0019" file="imgb0019.tif" wi="86" he="22" img-content="chem" img-format="tif"/></chemistry>
wherein T and T' are each independently oxygen or the group -NR<sub>11</sub>-, where R<sub>11</sub>, R<sub>15</sub>, and R<sub>16</sub> are as set forth above.</p>
<p id="p0052" num="0052">Referring now to structures III and IV above, examples of the structure for each of groups R<sub>5</sub> and R<sub>6</sub> may independently include: the reactive substituent R; hydrogen; hydroxy; C<sub>1</sub>-C<sub>6</sub> alkyl; C<sub>3</sub>-C<sub>7</sub> cycloalkyl; allyl; phenyl; mono-substituted phenyl; benzyl; mono-substituted benzyl; chloro; fluoro; the group -C(=O)W', wherein W' is hydroxy, C<sub>1</sub>-C<sub>6</sub> alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy, phenyl, mono-substituted<!-- EPO <DP n="36"> --> phenyl, amino, mono(C<sub>1</sub>-C<sub>6</sub>)alkylamino, or di(C<sub>1</sub>-C<sub>6</sub>)alkylamino; -OR<sub>18</sub>, wherein R<sub>18</sub> is C<sub>1</sub>-C<sub>6</sub> alkyl, phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy(C<sub>2</sub>-C<sub>4</sub>)alkyl, C<sub>3</sub>-C<sub>7</sub> cycloalkyl, mono(C<sub>1</sub>-C<sub>4</sub>)alkyl substituted C<sub>3</sub>-C<sub>7</sub> cycloalkyl, C<sub>1</sub>-C<sub>6</sub> chloroalkyl, C<sub>1</sub>-C<sub>6</sub> fluoroalkyl, allyl, or the group, -CH(R<sub>19</sub>)Y', wherein R<sub>19</sub> is hydrogen or C<sub>1</sub>-C<sub>3</sub> alkyl and Y' is CN, CF<sub>3</sub>, or COOR<sub>20</sub>, wherein R<sub>20</sub> is hydrogen or C<sub>1</sub>-C<sub>3</sub> alkyl, or R<sub>18</sub> is the group, -C(=O)W", wherein W" is hydrogen, C<sub>1</sub>-C<sub>6</sub> alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy, the unsubstituted, mono-, or di-substituted aryl groups phenyl or naphthyl, phenoxy, mono- or di-(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenoxy, mono- or di-(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenoxy, amino, mono(C<sub>1</sub>-C<sub>6</sub>)alkylamino, di(C<sub>1</sub>-C<sub>6</sub>)alkylamino, phenylamino, mono- or di-(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenylamino, or mono- or di-(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenylamino, wherein each of said phenyl, benzyl or aryl group substituents are independently C<sub>1</sub>-C<sub>6</sub> alkyl or C<sub>1</sub>-C<sub>6</sub> alkoxy; and a mono-substituted phenyl, said phenyl having a substituent located at the para position, wherein the substituent is: a dicarboxylic acid residue or derivative thereof, a diamine residue or derivative thereof, a amino alcohol residue or derivative thereof, a polyol residue or derivative thereof, -CH<sub>2</sub>-, -(CH<sub>2</sub>)<sub>t</sub>-, or -[O-(CH<sub>2</sub>)<sub>t</sub>]<sub>k</sub>-, wherein t is an integer 2, 3, 4, 5 or 6 and k is an integer from 1 to 50, the substituent being connected to an aryl group on another photochromic material.</p>
<p id="p0053" num="0053">Alternatively, R<sub>5</sub> and R<sub>6</sub> can together form an oxo group, a spiro-carbocyclic group containing 3 to 6 carbon atoms, or a spiro-heterocyclic group containing 1 to 2 oxygen atoms and 3 to 6 carbon atoms including the spirocarbon atom, said spiro-carbocyclic and spiro-heterocyclic groups being annellated with 0, 1 or 2 benzene rings.</p>
<p id="p0054" num="0054">Referring again to structures I, II, III, and IV above, examples of the structure of the groups B and B' may each independently include: a substituted phenyl; a substituted aryl; a substituted 9-julolidinyl; a substituted heteroaromatic group chosen from pyridyl<!-- EPO <DP n="37"> --> furanyl, benzofuran-2-yl, benzofuran-3-yl, thienyl, benzothien-2-yl, benzothien-3-yl, dibenzofuranyl, dibenzothienyl, carbazoyl, benzopyridyl, indolinyl, or fluorenyl, wherein one or more phenyl, aryl, 9-julolidinyl, or heteroaromatic substituent is the reactive substituent R; an unsubstituted, mono-, di-, or tri-substituted phenyl or aryl group; 9-julolidinyl; or an unsubstituted, mono- or di-substituted heteroaromatic group chosen from pyridyl, furanyl, benzofuran-2-yl, benzofuran-3-yl, thienyl, benzothien-2-yl, benzothien-3-yl, dibenzofuranyl, dibenzothienyl, carbazoyl, benzopyridyl, indolinyl or fluorenyl, wherein each of the phenyl, aryl and heteroaromatic substituents are independently chosen from: hydroxyl, a group -C(=O)R<sub>21</sub>, wherein R<sub>21</sub> is -OR<sub>22</sub>, -N(R<sub>23</sub>)R<sub>24</sub>, piperidino, or morpholino, wherein R<sub>22</sub> is allyl, C<sub>1</sub>-C<sub>6</sub> alkyl, phenyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl, phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy(C<sub>2</sub>-C<sub>4</sub>)alkyl or C<sub>1</sub>-C<sub>6</sub> haloalkyl, and R<sub>23</sub> and R<sub>24</sub> are each independently C<sub>1</sub>-C<sub>6</sub> alkyl, C<sub>5</sub>-C<sub>7</sub> cycloalkyl, phenyl or substituted phenyl, wherein the phenyl substituents are C<sub>1</sub>-C<sub>6</sub> alkyl or C<sub>1</sub>-C<sub>6</sub> alkoxy, and said halo substituent are chloro or fluoro, and aryl, mono(C<sub>1</sub>-C<sub>12</sub>)akoxyaryl, di(C<sub>1</sub>-C<sub>12</sub>)alkoxyaryl, mono(C<sub>1</sub>-C<sub>12</sub>)alkylaryl, di(C<sub>1</sub>-C<sub>12</sub>)alkylaryl, haloaryl, C<sub>3</sub>-C<sub>7</sub> cycloalkylaryl, C<sub>3</sub>-C<sub>7</sub> cycloalkyl, C<sub>3</sub>-C<sub>7</sub> cycloalkyloxy, C<sub>3</sub>-C<sub>7</sub> cyloalkyloxy(C<sub>1</sub>-C<sub>12</sub>)alkyl, C<sub>3</sub>-C<sub>7</sub> cycloalkyloxy(C<sub>1</sub>-C<sub>12</sub>)alkoxy, aryl(C<sub>1</sub>-C<sub>12</sub>)alkyl, aryl(C<sub>1</sub>-C<sub>12</sub>)alkoxy, aryloxy, aryloxy(C<sub>1</sub>-C<sub>12</sub>)alkyl, aryloxy(C<sub>1</sub>-C<sub>12</sub>)alkoxy, mono- or di(C<sub>1</sub>-C<sub>12</sub>)alkylaryl(C<sub>1</sub>-C<sub>12</sub>)alkyl, mono- or di-(C<sub>1</sub>-C<sub>12</sub>)alkoxyaryl(C<sub>1</sub>-C<sub>12</sub>)alkyl, mono- or di-(C<sub>1</sub>-C<sub>12</sub>)alkylaryl(C<sub>1</sub>-C<sub>12</sub>)alkoxy, mono- or di-(C<sub>1</sub>-C<sub>12</sub>)alkoxyaryl(C<sub>1</sub>-C<sub>12</sub>)alkoxy, amino, mono- or di-(C<sub>1</sub>-C<sub>12</sub>)alkylamino, diarylamino, piperazino, N-(C<sub>1</sub>-C<sub>12</sub>)alkylpiperazino, N-arylpiperazino, aziridino, indolino, piperidino, morpholino, thiomorpholino, tetrahydroquinolino, tetrahydroisoquinolino, pyrolidyl, C<sub>1</sub>-C<sub>12</sub> alkyl, C<sub>1</sub>-C<sub>12</sub> haloalkyl, C<sub>1</sub>-C<sub>12</sub> alkoxy, mono(C<sub>1</sub>-C<sub>12</sub>)alkoxy(C<sub>1</sub>-C<sub>12</sub>)alkyl, acryloxy, methacryloxy, and halogen; an unsubstituted or mono-substituted group chosen from pyrazolyl, imidazolyl, pyrazolinyl, imidazolinyl, pyrrolinyl, phenothiazinyl, phenoxazinyl, phenazinyl, or acridinyl,<!-- EPO <DP n="38"> --> wherein each of said substituents are independently C<sub>1</sub>-C<sub>12</sub> alkyl, C<sub>1</sub>-C<sub>12</sub> alkoxy, phenyl, or halogen; a mono-substituted phenyl, said phenyl having a substituent located at the para position, wherein the substituent is: a dicarboxylic acid residue or derivative thereof, a diamine residue or derivative thereof, an amino alcohol residue or derivative thereof, a polyol residue or derivative thereof, -CH<sub>2</sub>-, -(CH<sub>2</sub>)<sub>t</sub>-, or -[O-(CH<sub>2</sub>)<sub>t</sub>]<sub>k</sub>-, wherein t is an integer 2, 3, 4, 5, or 6 and k is an integer from 1 to 50, the substituent being connected to an aryl group on another photochromic material; a group represented by one of:
<chemistry id="chem0020" num="0020"><img id="ib0020" file="imgb0020.tif" wi="80" he="19" img-content="chem" img-format="tif"/></chemistry>
wherein K is -CH<sub>2</sub>- or -O- ; and M is -O- or substituted nitrogen, provided that when M is substituted nitrogen, K is -CH<sub>2</sub>-, the substituted nitrogen substituents are hydrogen, C<sub>1</sub>-C<sub>12</sub> alkyl, or C<sub>1</sub>-C<sub>12</sub> acyl, each R<sub>25</sub> is independently for each occurrence C<sub>1</sub>-C<sub>12</sub> alkyl, C<sub>1</sub>-C<sub>12</sub> alkoxy, hydroxy, or halogen, R<sub>26</sub> and R<sub>27</sub> each are independently hydrogen or C<sub>1</sub>-C<sub>12</sub> alkyl; and u is the integer 0, 1, or 2; or a group represented by:
<chemistry id="chem0021" num="0021"><img id="ib0021" file="imgb0021.tif" wi="41" he="14" img-content="chem" img-format="tif"/></chemistry>
wherein R<sub>28</sub> is hydrogen or C<sub>1</sub>-C<sub>12</sub> alkyl, and R<sub>29</sub> is an unsubstituted, mono-, or di-substituted group chosen from naphthyl, phenyl, furanyl, or thienyl, wherein the substituents are independently C<sub>1</sub>-C<sub>12</sub> alkyl, C<sub>1</sub>-C<sub>12</sub> alkoxy, or halogen.</p>
<p id="p0055" num="0055">Alternatively, B and B' taken together form un unsubstituted mono-, or di-substituted fluoren-9-ylidene, each of said fluoren-9-ylidene substituents are independently C<sub>1</sub>-C<sub>12</sub> alkyl, C<sub>1</sub>-C<sub>12</sub> alkoxy, or halogen.<!-- EPO <DP n="39"> --></p>
<p id="p0056" num="0056">For each of the groups R<sub>1</sub>, R<sub>1</sub>', R<sub>2</sub>, R<sub>3</sub>, R<sub>4</sub>, R<sub>5</sub>, R<sub>6</sub>, B, and B' discussed above, wherein the group comprises the reactive substituent R, each reactive substituent R can be independently chosen from and represented by one of:
<ul id="ul0005" list-style="dash" compact="compact">
<li>A-D-E-G-J;</li>
<li>G-E-G-J;</li>
<li>D-E-G-J;</li>
<li>A-D-J;</li>
<li>D-G-J; and</li>
<li>D-J.</li>
</ul></p>
<p id="p0057" num="0057">-A- is selected from C(=O)-, -OC(=O)-,-NHC(=O)-, and -CH<sub>2</sub>-.</p>
<p id="p0058" num="0058">-D- is selected from diamine residues or derivatives thereof, and amino alcohol residues or derivatives thereof as set forth above.</p>
<p id="p0059" num="0059">In certain non-limiting embodiments where -D- is a diamine residue or a derivative thereof, a first amine nitrogen of the diamine residue may form a bond with -A-, structure I, structure II, structure III, or structure IV, and a second amine nitrogen of the diamine residue may form a bond with -E-, -G-, or -J. In other non-limiting embodiments where -D- is a amino alcohol residue or a derivative thereof, the amine nitrogen of the amino alcohol residue may form a bond with -A-, structure I, structure II, structure III, or structure IV, and the alcohol oxygen of the amino alcohol residue may form a bond with -E-, -G-, or -J; or the amine nitrogen of said amino alcohol residue may form a bond with -E-, -G-, or -J, and said alcohol oxygen of said amino alcohol residue may form a bond with -A-, structure I, structure II, structure III, or structure IV.</p>
<p id="p0060" num="0060">-E- is selected from dicarboxylic acid residues or<!-- EPO <DP n="40"> --> derivatives thereof, as set forth above. In certain non-limiting embodiments of -E-, a first carbonyl group of said dicarboxylic acid residue may form a bond with -G- or -D-, and a second carbonyl group of said dicarboxylic acid residue may form a bond with -G-.</p>
<p id="p0061" num="0061">Each -G- is independently selected from polyalkyleneglycol residues and polyol residues and derivatives thereof, as set forth above. The polyalkyleneglycol residue has the structure:<br/>
<br/>
        -[(OC<sub>2</sub>H<sub>4</sub>)<sub>x</sub>(OC<sub>3</sub>H<sub>6</sub>)<sub>y</sub>(OC<sub>4</sub>H<sub>8</sub>)<sub>z</sub>]-O-,<br/>
<br/>
wherein x, y, and z are each a number between 0 and 50, and the sum of x, y, and z is from 1 to 50. In other non-limiting embodiments where -G- is a polyol residue or derivative thereof, a first polyol oxygen of the polyol residue may form a bond with -E-, -D-, structure I, structure II, structure III, or structure IV, and a second polyol oxygen of the polyol may form a bond with -E- or -J.</p>
<p id="p0062" num="0062">-J comprises the reactive moiety or residue thereof; or alternatively, -J is hydrogen, provided that if -J is hydrogen, -J is bonded to an oxygen of group -D- or -G-, forming a reactive moiety. The reactive moieties are discussed above.</p>
<p id="p0063" num="0063">Further, according to various non-limiting embodiments disclosed herein, one of groups R<sub>1</sub>, R<sub>1</sub>', R<sub>2</sub>, R<sub>3</sub>, R<sub>4</sub>, R<sub>5</sub>, R<sub>6</sub>, B, and B' on each of structures I, II, III, and IV comprises a reactive substituent R. In another non-limiting embodiment, two of the groups R<sub>1</sub>, R<sub>1</sub>', R<sub>2</sub>, R<sub>3</sub>, R<sub>4</sub>, R<sub>5</sub>, R<sub>6</sub>, B, and B' on each of structures I, II, III, and IV may comprise a reactive substituent R, wherein the reactive substituents R may be the same or different. In yet another non-limiting embodiment, from 1 and 4 of the groups R<sub>1</sub>, R<sub>1</sub>', R<sub>2</sub>, R<sub>3</sub>, R<sub>4</sub>, R<sub>5</sub>, R<sub>6</sub>, B, and B' on each of structures I, II, III, and IV may comprise a reactive substituent R, wherein the reactive substituents R may be the same or different.<!-- EPO <DP n="41"> --></p>
<p id="p0064" num="0064">Non-limiting examples of photochromic materials comprising naphthopyrans comprising a reactive substituent R according to the various embodiments of the present disclosure include the following:
<ol id="ol0002" compact="compact" ol-style="">
<li>(i) 3,3-di(4-methoxyphenyl)-6-methoxy-7-(3-(2-methacryloxyethyl)carbamyloxy methylenepiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran;</li>
<li>(ii) 3-phenyl-3-(4-morpholinophenyl)-6-methoxy-7-(3-(2-methacryloxyethyl) carbamyloxymethylenepiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4] naphtho[1,2-b]pyran;</li>
<li>(iii) 3-phenyl-3-(4-(4-phenylpiperazino)phenyl)-6-methoxy-7-(4-(2-methacryloxyethyl)carbamyloxypiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran;</li>
<li>(iv) 3-(4-fluorophenyl)-3-(4-methoxyphenyl)-6-methoxy-7-(4-(2-methacryloxyethyl) carbamyloxypiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho [1,2-b]pyran;</li>
<li>(v) 3-(4-fluorophenyl)-3-(4-morpholinophenyl)-6-methoxy-7-(4-(2-methacryloxyethyl)carbamyloxypiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran;</li>
<li>(vi) 3-phenyl-3-(4-morpholinophenyl)-6-methoxy-7-(4-(2-methacryloxyethyl) carbamyloxypiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho [1,2-b]pyran;</li>
<li>(vii) 3-phenyl-3-(4-morpholinophenyl)-6-methoxy-7-(4-(2-methacryloxyethyl) carbamylpiperazin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran;</li>
<li>(viii) 3-phenyl-3-(4-(2-(2-methacryloxyethyl)carbamyloxyethoxy)phenyl)-6-methoxy-7-piperidino-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran;<!-- EPO <DP n="42"> --></li>
<li>(ix) 3-phenyl-3-(4-methoxyphenyl)-6-methoxy-7-(4-(2-methacryloxyethyl) carbamylpiperazin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran;</li>
<li>(x) 3-phenyl-3-(4-(2-(2-methacryloxyethyl)carbamyloxyethoxy)phenyl)-6,7-dimethoxy-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran;</li>
<li>(xi) 3-phenyl-3-(4-(4-(2-methacryloxyethyl)carbamylpipexazin-1-yl)phenyl)-6,11-dimethoxy-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran;</li>
<li>(xii) 3-phenyl-3-(4-(2-methacryloxyethyl)carbamyloxyphenyl)-6,7-dimethoxy-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran;</li>
<li>(xiii) 3-phenyl-3-(4-morpholinophenyl)-6-methoxy-7-(3-(2-(2-(2-(2-(2-(2-(2-methacryloxyethoxy)ethoxy)ethoxy)ethoxy)ethoxy)ethoxy)ca rbonylethyl) carboxymethylenepiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4] naphtho[1,2-b]pyran;</li>
<li>(xiv) 3-phenyl-3-(4-methoxyphenyl)-6-methoxy-7-(3-(2-(2-(2-(2-(2-(2-(2-methacryloxyethoxy)ethoxy)ethoxy)ethoxy)ethoxy)ethoxy)ca rbonylethyl) carboxymethylenepiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran;</li>
<li>(xv) 3-phenyl-3-(4-morpholinophenyl)-6-methoxy-7-(4-(2-(2-(2-(2-(2-(2-(2-methacryloxyethoxy)ethoxy)ethoxy)ethoxy)ethoxy)ethoxy)carbonylethyl) carboxypiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran;<!-- EPO <DP n="43"> --></li>
<li>(xvi) 3-phenyl-3-(4-methoxyphenyl)-6-methoxy-7-(4-(2-(2-(2-(2-(2-(2-(2-methacryloxyethoxy)ethoxy)ethoxy)ethoxy)ethoxy)ethoxy)ca rbonylethyl) carboxypiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran;</li>
<li>(xvii) 3-phenyl-3-(4-(2-(2-(2-(2-(2-(2-(2-(2-methacryloxyethoxy)ethoxy)ethoxy)ethoxy) ethoxy)ethoxy)carbonylethyl)carboxyethoxy)phenyl)-6-methoxy-7-morpholino-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran;</li>
<li>(xviii) 3-phenyl-3-(4-(4-(2-(2-methacryloxyethyl)carbamyloxyethyl)piperazin-1-yl)phenyl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran;</li>
</ol>
and mixtures thereof.</p>
<p id="p0065" num="0065">Non-limiting methods of synthesizing the reactive substituent R on the photochromic napthopyran according to various non-limiting embodiments of the photochromic materials comprising a reactive substituent disclosed herein will now be discussed with reference to the reaction schemes presented in <figref idref="f0001">Figures 1</figref> and <figref idref="f0002">2</figref>. <figref idref="f0001">Figure 1</figref> depicts various non-limiting methods of synthesizing a reactive substituent R at the 7 position of an indeno[2',3':3,4] naphtho[1,2-b]pyran. <figref idref="f0002">Figure 2</figref> depicts one non-limiting method of synthesizing a reactive substituent R on a B group of an indeno[2',3':3,4]naphtho[1,2-b]pyran. One skilled in the art will appreciate that there may be multiple ways to synthesize the reactive substituent on the photochromic naphthopyran, therefore it will be appreciated that these reaction schemes are presented for illustration purposes only and are not intended to be limiting herein.<!-- EPO <DP n="44"> --></p>
<p id="p0066" num="0066">Referring now to <figref idref="f0001">Figure 1</figref>, <figref idref="f0002">2</figref>,3-dimethoxy-7,7-dimethyl-7H-benzo[C]fluoren-5-ol <b>5</b> may be reacted with a substituted 2-propyn-1-ol to form indeno[2',3':3,4] naphtho[1,2-b]pyran <b>6</b>. Non-limiting methods of synthesizing 7H-benzo[C]fluoren-5-ols, suitable for use in the synthesis of various non-limiting embodiments disclosed herein, are described in <patcit id="pcit0011" dnum="US6296785B"><text>U.S. Patent No. 6,296,785</text></patcit> at col. 11, lines 6 to col. 28, line 35. Non-limiting methods of synthesizing substituted 2-propyn-1-ols, suitable for use in the synthesis of various non-limiting embodiments disclosed herein, are described in <patcit id="pcit0012" dnum="US5458814A"><text>U.S. Patent No. 5,458,814</text></patcit>, col. 4, line 11 to col. 5, line 9, and at step 1 of Examples 1, 4-6, 11, 12, and 13, and <patcit id="pcit0013" dnum="US5645767A"><text>5,645,767</text></patcit> at col. 5, line 12 to col. <b>6</b>, line 30. Indeno-fused naphthopyran <b>6</b> may then be reacted with a diamine or amino alcohol. For example, <b>6</b> may be reacted with a diamine, such as piperazine to afford the 6-methoxy-7-(piperizin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4] naphtho[1,2-b]pyran <b>7</b>. The piperazine moiety of <b>7</b> may be condensed with 2-iscyanatoethyl methacrylate to afford photochromic naphthopyran <b>8</b> having an R substituent comprising -D-J, as defined herein above, where -D- is a diamine residue. Alternatively, indeno-fused naphthopyran <b>6</b> may be reacted with an amino alcohol, such as 3-piperidinomethanol to afford the 6-methoxy-7-(3-hydroxymethylenepiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4] naphtho[1,2-b]pyran <b>9</b>. The hydroxy moiety of <b>9</b> may be condensed with 2-iscyanatoethyl methacrylate to afford photochromic naphthopyran <b>10</b> having an R substituent comprising -D-J, as defined herein above, where -D- is an amino alcohol residue.</p>
<p id="p0067" num="0067">Referring still to <figref idref="f0001">Figure 1</figref>, the hydroxy moiety of <b>9</b> may alternatively be reacted with a cyclic anhydride, such as succinic anhydride to afford the 6-methoxy-7-(3-(2-hydroxycarbonylethylcarboxymethylenepiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4] naphtho[1,2-b]pyran <b>11</b>. The carboxylic acid of <b>11</b> may be esterified with polyethyleneglycol methacrylate of afford photochromic<!-- EPO <DP n="45"> --> naphthopyran <b>12</b> having an R substituent comprising -D-E-G-J, as defined herein above.</p>
<p id="p0068" num="0068">Referring now to <figref idref="f0002">Figure 2</figref> ,7,7-dimethyl-7H-benzo[C]fluoren-5-ol (13) may be reacted with 1-phenyl-1-(4-(4-(2-hydroxyethyl)piperizin-1-yl)phenyl-2-propyn-1-ol, to form indeno[2',3':3,4]naphtho[1,2-b]pyran <b>14</b>. The hydroxy moiety of <b>14</b> may be condensed with 2-iscyanatoethyl methacrylate to afford photochromic naphthopyran <b>15</b> having an R substituent on the B group, wherein the reactive substituent R comprises -D-J, as defined herein above, where -D- is an amino alcohol residue.</p>
<p id="p0069" num="0069">The photochromic materials of the present disclosure, comprising a photochromic naphthopyran and a reactive substituent bonded to the photochromic naphthopyran, wherein the reactive substituent has the structure as set forth herein, are used in ophthalmic devices.</p>
<p id="p0070" num="0070">In certain non-limiting embodiments, the photochromic materials of the present disclosure may be used in soft contact lenses, hard contact lenses, intraocular lenses, overlay lenses, ocular inserts, and optical inserts.</p>
<p id="p0071" num="0071">The photochromic materials according to various non-limiting embodiments disclosed herein may be incorporated into an organic material, such as a polymeric, oligomeric, or monomeric material, which may be used, for example and without limitation, to form ophthalmic devices. As used herein the term "incorporated into" means physically and/or chemically combined with. Thus, the ophthalmic devices according to various non-limiting embodiments disclosed herein may be formed from photochromic materials physically and/or chemically combined with at least a portion of an organic material. As used herein the terms "polymer" and "polymeric material" refers to homopolymers and copolymers (e.g., random copolymers, block copolymers, and alternating copolymers), as well as blends and other combinations thereof. Further, it is contemplated that the photochromic materials according to various non-limiting embodiments disclosed herein may each be used alone, in combination with other photochromic materials according to various non-limiting<!-- EPO <DP n="46"> --> embodiments disclosed herein, or in combination with other appropriate complementary conventional photochromic materials. For example, the photochromic materials according to various non-limiting embodiments disclosed herein may be used in conjunction with other complementary conventional photochromic materials having an activated absorption maxima within the range of 300 to 1000 nanometers. The complementary conventional photochromic materials may include other polymerizable or compatibilized photochromic materials.</p>
<p id="p0072" num="0072">The present disclosure also contemplates ophthalmic devices formed from photochromic compositions comprising a polymeric material and a photochromic material according to the various non-limiting embodiments discussed herein. As used herein, the term "photochromic composition" refers to a photochromic material in combination with another material, which may or may not be a photochromic material. In certain non-limiting examples of the photochromic compositions according to various non-limiting embodiments of the present disclosure, the photochromic material is incorporated into at least a portion of the polymeric material. For example, and without limitation, the photochromic materials disclosed herein may be incorporated into a portion of the polymeric material, such as by bonding to a portion of the polymeric material, for example by co-polymerizing the photochromic material with a portion of the polymeric material; or blending with the polymeric material. As used herein, the term "blended" or "blending" mean that the photochromic material is intermixed or intermingled with at least a portion of an organic material, such as the polymeric material, but not bonded to the organic material. As used herein, the terms "bonded" or "bonding" mean that the photocluomic material is linked to a portion of an organic material, such as the polymeric material, or a precursor thereof. For example, in certain non-limiting embodiments, the photochromic material may be bonded to a portion of an organic material through a reactive substituent (such, but not limited to, those reactive substituents discussed above).<!-- EPO <DP n="47"> --></p>
<p id="p0073" num="0073">According to one non-limiting embodiment, the photochromic material may be incorporated into at least a portion of the polymeric material or at least a portion of the monomeric material or oligomeric material from which the ophthalmic device is formed. For example, photochromic materials according to various non-limiting embodiments disclosed herein that have a reactive substituent may be bonded to an organic material such as a monomer, oligomer, or polymer having a group with which a reactive moiety may be reacted, or the reactive moiety can be reacted as a co-monomer in the polymerization reaction from which the organic material is formed, for example, in a co-polymerization process. As used, herein, the term "co-polymerized with" means that the photochromic material is linked to a portion of the polymeric material by reacting as a co-monomer in the polymerization reaction of the host monomers that result in the polymeric material. For example, photochromic materials according to various non-limiting embodiments herein have a reactive substituent that comprises a polymerizable moiety that may react as a co-monomer during the polymerization of the host monomers.</p>
<p id="p0074" num="0074">Polymeric materials suitable for the various non-limiting embodiments of the present disclosure include those suitable for the production of ophthalmic devices.</p>
<p id="p0075" num="0075">Further, according to various non-limiting embodiments at least a portion of the ophthalmic device is transparent For example, according to various non-limiting embodiments, the ophthalmic device may be formed from an optically clear polymeric material. According to one specific non-limiting embodiment, the polymeric material is formed from a mixture comprising polymerizable and optionally non-polymerizable ophthalmic device forming components which are known in the art to be useful for forming ophthalmic devices, such as contact lenses. More specifically, suitable components include polymerizable monomers, prepolymers and macromers, wetting agents, UV absorbing compounds, compatibilizing components, colorants and tints, mold release agents, processing aids, and mixtures thereof.<!-- EPO <DP n="48"> --></p>
<p id="p0076" num="0076">According to one specific non-limiting embodiment, the ophthalmic device forming components preferably form a hydrogel upon polymerization and hydration. A hydrogel is a hydrated, crosslinked polymeric system that contains water in an equilibrium state. Hydrogels typically are oxygen permeable and biocompatible, making them preferred materials for producing ophthalmic devices and in particular contact and intraocular lenses.</p>
<p id="p0077" num="0077">Ophthalmic device forming components are known in the art and include polymerizable monomers, prepolymers and macromers which contain polymerizable group(s) and performance groups which provide the resulting polymeric material with desirable properties. Suitable performance groups include but are not limited to hydrophilic groups, oxygen permeability enhancing groups, UV or visible light absorbing groups, and combinations thereof.</p>
<p id="p0078" num="0078">The term "monomer" used herein refers to low molecular weight compounds (i.e. typically having number average molecular weights less than about 700). Prepolymers are medium to high molecular weight compounds or polymers (having repeating structural units and a number average molecular weight greater than about 700) containing functional groups capable of further polymerization. Macromers are uncrosslinked polymers which are capable of cross-linking or further polymerization.</p>
<p id="p0079" num="0079">One suitable class of ophthalmic device forming components includes hydrophilic components, which are capable of providing at least about 20% and preferably at least about 25% water content to the resulting lens when combined with the remaining components. The hydrophilic components that may be used to make the polymers of this invention are monomers having at least one polymerizable double bond and at least one hydrophilic functional group. Examples of polymerizable double bonds include acrylic, methacrylic, acrylamido, methacrylamido, fumaric, maleic, styryl, isopropenylphenyl, O-vinylcarbonate, O-vinylcarbamate, allylic, O-vinylacetyl and N-vinyllactam and N-vinylamido double bonds. Non-limiting examples of hydrophilic monomers having acrylic and<!-- EPO <DP n="49"> --> methacrylic polymerizable double bonds include N,N-dimethylacrylamide (DMA), 2-hydroxyethyl acrylate, 2-hydroxyethyl methacrylate, glycerol methacrylate, 2-hydroxyethyl methacrylamide, polyethyleneglycol monomethacrylate; methacrylic acid, acrylic acid and mixtures thereof.</p>
<p id="p0080" num="0080">Non-limiting examples of hydrophilic monomers having N-vinyl lactam and N-vinylamide polymerizable double bonds include N-vinyl pyrrolidone (NVP), N-vinyl-N-methyl acetamide, N-vinyl-N-ethyl acetamide, N-vinyl-N-ethyl formamide, N-vinyl formamide, N-2-hydroxyethyl vinyl carbamate, N-carboxy-ß-alanine N-vinyl ester, with NVP and N-vinyl-N-methyl acetamide being preferred. Polymers formed from these monomers may also be included.</p>
<p id="p0081" num="0081">Other hydrophilic monomers that can be employed in the invention include polyoxyethylene polyols having one or more of the terminal hydroxyl groups replaced with a functional group containing a polymerizable double bond.</p>
<p id="p0082" num="0082">Still further examples are the hydrophilic vinyl carbonate or vinyl carbamate monomers disclosed in <patcit id="pcit0014" dnum="US5070215A"><text>U.S. Pat. No.5,070,215</text></patcit>, and the hydrophilic oxazolone monomers disclosed in <patcit id="pcit0015" dnum="US4190277A"><text>U.S. Pat. No. 4,190,277</text></patcit>. Other suitable hydrophilic monomers will be apparent to one skilled in the art.</p>
<p id="p0083" num="0083">Preferred hydrophilic monomers which may be incorporated into the polymerizable mixture of the present invention include hydrophilic monomers such as N,N-dimethyl acrylamide (DMA), 2-hydroxyethyl acrylate, 2-hydroxyethyl methacrylate (HEMA), glycerol methacrylate, 2-hydroxyethyl methacrylamide, N-vinylpyrrolidone (NVP), N-vinyl-N-methyl acetamide, polyethyleneglycol monomethacrylate and mixtures thereof.</p>
<p id="p0084" num="0084">Most preferred hydrophilic monomers include HEMA, DMA, NVP, N-vinyl-N-methyl acetamide and mixtures thereof.</p>
<p id="p0085" num="0085">The above referenced hydrophilic monomers are suitable for the production of conventional contact lenses such as those made from etafilcon, polymacon, vifilcon, genfilcon A and lenefilcon A. For a conventional contact lens the amount of hydrophilic monomer incorporated into the polymerizable mixture is<!-- EPO <DP n="50"> --> at least about 70 weight % and preferably at least about 80 weight %, based upon the weight of all the components in the polymerizable mixture.</p>
<p id="p0086" num="0086">In another non-limiting embodiment, suitable contact lenses may be made from polymeric materials having increased permeability to oxygen, such as galyfilcon A, senofilcon A, balafilcon, and lotrafilcon A and B. The polymerization mixtures used to form these and other materials having increased permeability to oxygen, generally include one or more of the hydrophilic monomers listed above, with at least one silicone containing component.</p>
<p id="p0087" num="0087">A silicone-containing component is one that contains at least one [-Si-O-Si] group, in a monomer, macromer or prepolymer. Preferably, the Si and attached O are present in the silicone-containing component in an amount greater than 20 weight percent, and more preferably greater than 30 weight percent of the total molecular weight of the silicone-containing component. Useful silicone-containing components preferably comprise polymerizable functional groups such as acrylate, methacrylate, acrylamide, methacrylamide, N-vinyl lactam, N-vinylamide, and styryl functional groups. Examples of silicone-containing components which are useful in this invention may be found in <patcit id="pcit0016" dnum="US3808178A"><text>U.S. Pat. Nos. 3,808,178</text></patcit>; <patcit id="pcit0017" dnum="US4120570A"><text>4,120,570</text></patcit>; <patcit id="pcit0018" dnum="US4136250A"><text>4,136,250</text></patcit>; <patcit id="pcit0019" dnum="US4153641A"><text>4,153,641</text></patcit>; <patcit id="pcit0020" dnum="US4740533A"><text>4,740,533</text></patcit>; <patcit id="pcit0021" dnum="US5034461A"><text>5,034,461</text></patcit> and <patcit id="pcit0022" dnum="US5070215A"><text>5,070,215</text></patcit>, and <patcit id="pcit0023" dnum="EP080539A"><text>EP080539</text></patcit>. These references disclose many examples of olefinic silicone-containing components.</p>
<p id="p0088" num="0088">Further examples of suitable silicone-containing monomers are polysiloxanylalkyl(meth)acrylic monomers represented by the following formula:
<chemistry id="chem0022" num="0022"><img id="ib0022" file="imgb0022.tif" wi="72" he="32" img-content="chem" img-format="tif"/></chemistry><!-- EPO <DP n="51"> -->
wherein: R<sup>30</sup> denotes H or lower alkyl; X denotes O or NR<sup>34</sup>; each R<sup>34</sup> independently denotes hydrogen or methyl,<br/>
each R<sup>31</sup>-R<sup>33</sup> independently denotes a lower alkyl radical or a phenyl radical, and n is 1 or 3 to 10.</p>
<p id="p0089" num="0089">Examples of these polysiloxanylalkyl (meth)acrylic monomers include methacryloxypropyl tris(trimethylsiloxy) silane, methacryloxymethylpentamethyldisiloxane, methacryloxypropylpentamethyldisiloxane, methyldi(trimethylsiloxy)methacryloxypropyl silane, and methyldi(trimethylsiloxy)methacryloxymethyl silane. Methacryloxypropyl tris(trimethylsiloxy)silane is the most preferred.</p>
<p id="p0090" num="0090">One preferred class of silicone-containing components is a poly(organosiloxane) prepolymer represented by Formula VII:
<chemistry id="chem0023" num="0023"><img id="ib0023" file="imgb0023.tif" wi="114" he="35" img-content="chem" img-format="tif"/></chemistry>
wherein each A independently denotes an activated unsaturated group, such as an ester or amide of an acrylic or a methacrylic acid or an alkyl or aryl group (providing that at least one A comprises an activated unsaturated group capable of undergoing radical polymerization); each of R<sup>35</sup>, R<sup>36</sup>, R<sup>37</sup> and R<sup>38</sup> are independently selected from the group consisting of a monovalent hydrocarbon radical or a halogen substituted monovalent hydrocarbon radical having 1 to 18 carbon atoms which may have ether linkages between carbon atoms;<br/>
R<sup>39</sup> denotes a divalent hydrocarbon radical having from 1 to 22 carbon atoms, and<br/>
<!-- EPO <DP n="52"> -->m is 0 or an integer greater than or equal to 1, and preferably 5 to 400, and more preferably 10 to 300. One specific example is α, ω-bismethacryloxypropyl poly-dimethylsiloxane. Another preferred example is mPDMS (monomethacryloxypropyl terminated mono-n-butyl terminated polydimethylsiloxane).</p>
<p id="p0091" num="0091">Another useful class of silicone containing components includes silicone-containing vinyl carbonate or vinyl carbamate monomers of the following formula:
<chemistry id="chem0024" num="0024"><img id="ib0024" file="imgb0024.tif" wi="94" he="32" img-content="chem" img-format="tif"/></chemistry>
wherein: Y denotes O, S, or NH; R<i><sup>Si</sup></i> denotes a silicone-containing organic radical; R<sup>40</sup> denotes hydrogen or methyl; d is 1, 2, 3 or 4; and q is 0 or 1. Suitable silicone-containing organic radicals R<i><sup>Si</sup></i> include the following:<br/>
<br/>
        -(CH<sub>2</sub>)<sub>q</sub>,Si[(CH<sub>2</sub>)<sub>s</sub>CH<sub>3</sub>]<sub>3</sub><br/>
<br/>
        -(CH<sub>2</sub>)<sub>q</sub>,Si[OSi(CH<sub>2</sub>)<sub>s</sub>CH<sub>3</sub>]<sub>3</sub><br/>
 <br/>
  
<chemistry id="chem0025" num="0025"><img id="ib0025" file="imgb0025.tif" wi="52" he="26" img-content="chem" img-format="tif"/></chemistry>
wherein:
<ul id="ul0006" list-style="none" compact="compact">
<li>Q denotes
<chemistry id="chem0026" num="0026"><img id="ib0026" file="imgb0026.tif" wi="50" he="19" img-content="chem" img-format="tif"/></chemistry><!-- EPO <DP n="53"> -->
wherein p is 1 to 6; R<sup>41</sup> denotes an alkyl radical or a fluoroalkyl radical having 1 to 6 carbon atoms; e is 1 to 200; q' is 1, 2, 3 or 4; and s is 0, 1, 2, 3, 4 or 5.</li>
</ul></p>
<p id="p0092" num="0092">The silicone-containing vinyl carbonate or vinyl carbamate monomers specifically include: 1,3-bis[4-(vinyloxycarbonyloxy)but-1-yl]tetramethyl-disiloxane; 3-(vinyloxycarbonylthio) propyl-[tris (trimethylsiloxy)silane]; 3-[tris(trimethylsiloxy)silyl] propyl allyl carbamate; 3-tris(trimethylsiloxy)silyl] propyl vinyl carbamate; trimethylsilylethyl vinyl carbonate; trimethylsilylmethyl vinyl carbonate, and
<chemistry id="chem0027" num="0027"><img id="ib0027" file="imgb0027.tif" wi="106" he="21" img-content="chem" img-format="tif"/></chemistry></p>
<p id="p0093" num="0093">The above description of silicone containing components is not an exhaustive list. Any other silicone components known in the art may be used. Further examples include, but are not limited to macromers made using group transfer polymerization, such as those disclosed in <patcit id="pcit0024" dnum="US6367929B"><text>US 6,367,929</text></patcit>, polysiloxane containing polyurethane compounds such as those disclosed in <patcit id="pcit0025" dnum="US6858218B"><text>US 6,858,218</text></patcit>, polysiloxane containing macromers, such as those described as Materials A-D in <patcit id="pcit0026" dnum="US5760100A"><text>US 5,760,100</text></patcit>; macromers containing polysiloxane, polyalkylene ether, diisocyanate, polyfluorinated hydrocarbon, polyfluorinated ether and polysaccharide groups, such as those described is <patcit id="pcit0027" dnum="WO9631792A"><text>WO 96/31792</text></patcit>; polysiloxanes with a polar fluorinated graft or side group(s) having a hydrogen atom attached to a terminal difluoro-substituted carbon atom, such as those described in <patcit id="pcit0028" dnum="US5321108A"><text>U.S. Pat. Nos. 5,321,108</text></patcit>; <patcit id="pcit0029" dnum="US5387662A"><text>5,387,662</text></patcit> and <patcit id="pcit0030" dnum="US5539016A"><text>5,539,016</text></patcit>; hydrophilic siloxanyl methacrylate monomers and polysiloxane-dimethacrylate macromers such as those described in <patcit id="pcit0031" dnum="US20040192872A"><text>US 2004/0192872</text></patcit>; and combinations thereof.<!-- EPO <DP n="54"> --></p>
<p id="p0094" num="0094">The polymerizable mixture may contain additional components such as, but not limited to, wetting agents, such as those disclosed in <patcit id="pcit0032" dnum="US6822016B"><text>US 6,822,016</text></patcit>, <patcit id="pcit0033" dnum="US11057363B"><text>US Serial No.11/057,363</text></patcit> (published as <patcit id="pcit0034" dnum="US20080045612A"><text>US 2008/0045612</text></patcit>), <patcit id="pcit0035" dnum="US10954560B"><text>US Serial No.10/954,560</text></patcit> (published as <patcit id="pcit0036" dnum="US20060074208A"><text>US 2006/0074208</text></patcit>), <patcit id="pcit0037" dnum="US10954559B"><text>US Serial No. 10/954,559</text></patcit> (published as <patcit id="pcit0038" dnum="US20060072069A"><text>US 2006/0072069</text></patcit>) and <patcit id="pcit0039" dnum="US10955214B"><text>US Serial No. 10 955,214</text></patcit>; (published as <patcit id="pcit0040" dnum="US20060069235A"><text>US 2006/0069235</text></patcit>) compatibilizing components, such as those disclosed in <patcit id="pcit0041" dnum="US6822016B"><text>US 6,822,016</text></patcit> and <patcit id="pcit0042" dnum="WO03022322A"><text>WO03/022322</text></patcit>; UV absorbers, medicinal agents, antimicrobial compounds, reactive tints, pigments, copolymerizable and nonpolymerizable dyes, release agents and combinations thereof.</p>
<p id="p0095" num="0095">Also contemplated are copolymers of the aforementioned monomers, combinations, and blends of the aforementioned polymers and copolymers with other polymers, e.g., to form interpenetrating network products.</p>
<p id="p0096" num="0096">The polymerizable mixture may optionally further comprise a diluent. Suitable diluents for polymerizable mixtures are well known in the art. Non-limiting examples for polymerizable mixtures for hydrophilic soft contact lenses include organic solvents or water or mixtures hereof. Preferred organic solvents include alcohols, diols, triols, polyols and polyalkylene glycols. Examples include but are not limited to glycerin, diols such as ethylene glycol or diethylene glycol; boric acid esters of polyols such as those described in <patcit id="pcit0043" dnum="US4680336A"><text>US Patents 4,680,336</text></patcit>; <patcit id="pcit0044" dnum="US4889664A"><text>4,889,664</text></patcit> and <patcit id="pcit0045" dnum="US5039459A"><text>5,039,459</text></patcit>; polyvinylpyrrolidone; ethoxylated alkyl glucoside; ethoxylated bisphenol A; polyethylene glycol; mixtures of propoxylated and ethoxylated alkyl glucoside; single phase mixture of ethoxylated or propoxylated alkyl glucoside and C<sub>2-12</sub> dihydric alcohol; adducts of ε-caprolactone and C<sub>2-6</sub> alkanediols and triols; ethoxylated C<sub>3-6</sub> alkanetriol; and mixtures of these as described in <patcit id="pcit0046" dnum="US5457140A"><text>US Patents 5,457,140</text></patcit>; <patcit id="pcit0047" dnum="US5490059A"><text>5,490,059</text></patcit>, <patcit id="pcit0048" dnum="US5490960A"><text>5,490,960</text></patcit>; <patcit id="pcit0049" dnum="US5498379A"><text>5,498,379</text></patcit>; <patcit id="pcit0050" dnum="US5594043A"><text>5,594,043</text></patcit>; <patcit id="pcit0051" dnum="US5684058A"><text>5,684,058</text></patcit>; <patcit id="pcit0052" dnum="US5736409A"><text>5,736,409</text></patcit>; <patcit id="pcit0053" dnum="US5910519A"><text>5,910,519</text></patcit>. Diluents can also be selected from the group having a combination of a defined viscosity and Hanson cohesion parameter as described in <patcit id="pcit0054" dnum="US4680336A"><text>US Patent 4,680,336</text></patcit>.</p>
<p id="p0097" num="0097">Non-limiting examples of diluents suitable for polymerizable mixtures for silicone hydrogel soft contact lenses include alcohols such as those disclosed in <patcit id="pcit0055" dnum="US6020445A"><text>US 6,020,445</text></patcit> and <patcit id="pcit0056" dnum="US10794399B"><text>US Serial No. 10/794,399</text></patcit> (published as <patcit id="pcit0057" dnum="US20100280146A"><text>US 2010/0280146</text></patcit>) for silicone hydrogel soft contact lenses.<!-- EPO <DP n="55"> --> Many other suitable examples are known to those of skill in the art and are included within the scope of this invention.</p>
<p id="p0098" num="0098">Hard contact lenses are made from polymers that include but are not limited to polymers of poly(methyl)methacrylate, silicon acrylates, fluoroacrylates, fluoroethers, polyacetylenes, and polyimides, where the preparation of representative examples may be found in <patcit id="pcit0058" dnum="US4540761A"><text>US Patents 4,540,761</text></patcit>; <patcit id="pcit0059" dnum="US4508884A"><text>4,508,884</text></patcit>; <patcit id="pcit0060" dnum="US4433125A"><text>4,433,125</text></patcit> and <patcit id="pcit0061" dnum="US4330383A"><text>4,330,383</text></patcit>. Intraocular lenses of the invention can be formed using known materials. For example, the lenses may be made from a rigid material including, without limitation, polymethyl methacrylate, polystyrene, polycarbonate, and combinations thereof. Additionally, flexible materials may be used including, without limitation, hydrogels, silicone materials, acrylic materials, fluorocarbon materials, or combinations thereof. Typical intraocular lenses are described in <patcit id="pcit0062" dnum="WO0026698A"><text>WO 0026698</text></patcit>, <patcit id="pcit0063" dnum="WO0022460A"><text>WO 0022460</text></patcit>, <patcit id="pcit0064" dnum="WO9929750A"><text>WO 9929750</text></patcit>, <patcit id="pcit0065" dnum="WO9927978A"><text>WO 9927978</text></patcit>, <patcit id="pcit0066" dnum="WO0022459A"><text>WO 0022459</text></patcit>. Other ophthalmic devices, such as punctal plugs may be made from collagen and silicone elastomers.</p>
<p id="p0099" num="0099">Various non-limiting embodiments disclosed herein provide photochromic ophthalmic devices comprising a photochromic material according to any of the non-limiting embodiments discussed above connected to a portion of the ophthalmic device. As used herein, the term "connected to" means associated with, either directly or indirectly through another material or structure.</p>
<p id="p0100" num="0100">For example and without limitation, the photochromic materials disclosed herein may be connected to at least a portion of the ophthalmic device, such as by bonding the photochromic materials to at least a portion of the material from which the ophthalmic device is made, for example by co-polymerizing or otherwise bonding the photochromic materials with the ophthalmic device material; blending the photochromic materials with the ophthalmic device material; or coating the photochromic materials on at least a portion of a surface of the ophthalmic device.<!-- EPO <DP n="56"> --> Alternatively, the photochromic material may be connected to at least a portion of the ophthalmic device such as through an intermediate coating, film or layer.</p>
<p id="p0101" num="0101">According to various non-limiting embodiments disclosed herein, the photochromic material may be connected to at least a portion of the ophthalmic device by incorporating the photochromic material into at least a portion of the polymeric material of the ophthalmic device, or at least a portion of the oligomeric or monomeric material from which the ophthalmic device is formed. For example, according to one non-limiting embodiment, the photochromic material may be incorporated into the polymeric material of the ophthalmic device by the cast-in-place method. Additionally or alternatively, the photochromic material may be connected with at least a portion of the polymeric material of the ophthalmic device by imbibition. Imbibition and the cast-in-place method are discussed below.</p>
<p id="p0102" num="0102">For example, according to one non-limiting embodiment, the ophthalmic device comprises a polymeric material and a photochromic material is bonded to at least a portion of the polymeric material. According to another non-limiting embodiment, the ophthalmic device comprises a polymeric material and a photochromic material is blended with at least a portion of the polymeric material. According to another non-limiting embodiment, the ophthalmic device comprises a polymeric material and a photochromic material is co-polymerized with at least a portion of the polymeric material. Non-limiting examples of polymeric materials that are useful in forming the substrates according to various non-limiting embodiments disclosed herein are set forth above in detail.</p>
<p id="p0103" num="0103">According to other non-limiting embodiments, the photochromic material may be connected to at least a portion of the ophthalmic device of the photochromic article as part of an at least partial coating that is connected to at least a portion of the ophthalmic device. Further, the photochromic material may be incorporated into at least a portion of the coating composition prior to application of the coating composition to the ophthalmic device, or alternatively, a coating composition may be applied to the substrate, at least partially set, and thereafter the photochromic<!-- EPO <DP n="57"> --> material may be imbibed into at least a portion of the coating. As used herein, the terms "set" and "setting" include, without limitation, curing, polymerizing, cross-linking, cooling, and drying.</p>
<p id="p0104" num="0104">For example, in one non-limiting embodiment of the present disclosure, the ophthalmic device may comprise an at least partial coating of a polymeric material connected to at least a portion of a surface thereof. According to this non-limiting embodiment, the photochromic material may be blended with at least a portion of the polymeric material of the at least partial coating, or the photochromic material may be bonded to at least a portion of the polymeric material of the at least partial coating. According to one specific no-limiting embodiment, the photochromic material may be co-polymerized with at least a portion of the polymeric material of the at least partial coating.</p>
<p id="p0105" num="0105">The at least partial coating comprising a photochromic material may be directly connected to the ophthalmic device, for example, by directly applying a coating composition comprising a photochromic material to at least a portion of a surface of the ophthalmic device, and at least partially setting the coating composition. Additionally or alternatively, the at least partial coating comprising a photochromic material may be connected to the ophthalmic device, for example, through one or more additional coatings. For example, while not limiting herein, according to various non-limiting embodiments, an additional coating composition may be applied to at least a portion of the surface of the ophthalmic device, at least partially set, and thereafter the coating composition comprising a photochromic material may be applied over the additional coating and at least partially set.</p>
<p id="p0106" num="0106">Non-limiting examples of additional coatings and films that may be used in conjunction with the ophthalmic device disclosed herein include conventional photochromic coating and films; ophthalmically compatible coatings including clear coats, hydrophilic coatings, and combinations thereof.<!-- EPO <DP n="58"> --></p>
<p id="p0107" num="0107">Non-limiting examples of conventional photochromic coatings and films include, but are not limited to, coatings and films comprising conventional photochromic materials.</p>
<p id="p0108" num="0108">The present disclosure also contemplates various methods of making ophthalmic devices comprising connecting a photochromic material, according to the various non-limiting embodiments disclosed herein, to at least a portion of an ophthalmic device. For example, in one non-limiting embodiment, connecting the photochromic material to at least a portion of the ophthalmic device may comprise blending the photochromic material with at least a portion of the polymeric material used to form the ophthalmic device. In another non-limiting embodiment, connecting the photochromic material to at least a portion of the ophthalmic device may comprise bonding the photochromic material to at least a portion of the polymeric material of the ophthalmic device. For example in one non-limiting embodiment, connecting the photochromic material to at least a portion of the ophthalmic device may comprise co-polymerizing the photochromic material with at least a portion of the polymeric material used to form the ophthalmic device. Non-limiting methods of connecting photochromic materials to a polymeric material include, for example, mixing the photochromic material into a solution or melt of a polymeric, oligomeric, or monomeric material, and subsequently at least partially setting the polymeric, oligomeric, or monomeric material. It will be appreciated by those skilled in the art that, according to this non-limiting embodiment, in the resultant photochromic composition, the photochromic materials may be blended with the polymeric material (i.e., intermixed with but not bonded to) or bonded to the polymeric material. For example, if the photochromic material contains a polymerizable group that is compatible with the polymeric, oligomeric, or monomer material, during setting of the organic material the photochromic material can be reacted with at least a portion thereof to bond the photochromic material thereto.</p>
<p id="p0109" num="0109">In another non-limiting embodiment, connecting the photochromic material to at least a portion of the ophthalmic device may comprise imbibing the<!-- EPO <DP n="59"> --> photochromic material with at least a portion of the polymeric material of the ophthalmic device. According to this non-limiting embodiment, the photochromic material may be caused to diffuse into the polymeric material, for example by immersing an ophthalmic device comprising a polymeric material in a solution containing the photochromic material, with or with out heating. In another non-limiting embodiment, the connecting the photochromic material to at least a portion of the ophthalmic device may comprise a combination of two or more of blending, bonding (for example co-polymerizing), and imbibing the photochromic material to/with at least a portion of the polymeric material of the ophthalmic device.</p>
<p id="p0110" num="0110">According to one non-limiting embodiment of the methods, wherein the substrate comprises a polymeric material, incorporating the photochromic material with at least a portion of a substrate comprises a cast-in-place method. According to this non-limiting embodiment, the photochromic material may be mixed with a polymeric solution or melt, or other oligomeric and/or monomeric solution or mixture, which is subsequently cast into a molding having a desired shape and at least partially set to form the ophthalmic device. Further, although not required according to this non-limiting embodiments, a photochromic material can be bonded to the polymeric material.</p>
<p id="p0111" num="0111">According to another non-limiting embodiment of the methods, wherein the ophthalmic device comprises a polymeric material, connecting the photochromic material to at least a portion of an ophthalmic device comprises in-mold casting. According to this non-limiting embodiment, a coating composition comprising the photochromic material, which may be a liquid coating composition, is applied to the surface of a mold and at least partially set. Thereafter, a polymer solution or melt, or oligomer or monomeric solution or mixture is cast over the coating and at least partially set. After setting, the ophthalmic device with the coating is removed from the mold.</p>
<p id="p0112" num="0112">According to still another non-limiting embodiment of the methods, connecting the photochromic material to at least a portion of a ophthalmic device<!-- EPO <DP n="60"> --> comprises applying an at least partial coating comprising the photochromic material to at least a portion of the ophthalmic device. Non-limiting examples of suitable coating methods include dip coating, spin coating, spray coating (e.g., using a liquid coating), curtain coating, roll coating, spin and spray coating, and over-molding. For example, according to one non-limiting embodiment, the photochromic material may be connected to the ophthalmic device by over-molding. According to this non-limiting embodiment, a coating composition comprising the photochromic material (which may be a liquid coating composition as previously discussed) is applied to a mold and the ophthalmic device is then placed into the mold such that the ophthalmic device contacts the coating causing it to spread over at least a portion of the surface of the ophthalmic device. Thereafter, the coating composition is at least partially set and the coated ophthalmic device is removed from the mold. Alternatively, over-molding may be done by placing the ophthalmic device into a mold such that an open region is defined between the ophthalmic device and the mold, and thereafter injecting a coating composition comprising the photochromic material into the open region. Thereafter, the coating composition can be at least partially set and the coated ophthalmic device is removed from the mold.</p>
<p id="p0113" num="0113">Further, it will be appreciated by those skilled in the art that the photochromic compositions, photochromic ophthalmic devices, and photochromic coating compositions according to various non-limiting embodiments disclosed herein may further comprise other additives that aid in the processing and/or performance of the composition. For example, and without limitation, such additives may include complementary photochromic materials, photoinitiators, thermal initiators, polymerization inhibitors, solvents, light stabilizers (such as, but not limited to, ultraviolet light absorbers and light stabilizers, such as hindered amine light stabilizers (HALS)), heat stabilizers, mold release agents, rheology control agents, leveling agents (such as, but not limited to, surfactants), free radical scavengers, or adhesion promoters (such as hexanediol diacrylate and coupling agents).<!-- EPO <DP n="61"> --></p>
<p id="p0114" num="0114">Each of the photochromic materials described herein may be used in amounts (or in a ratio) such that a ophthalmic device or a polymeric material to which the photochromic material is associated, i.e., blended, co-polymerized, or otherwise bonded, coated and/or imbibed, exhibits a desired resultant color, e.g., substantially clear and colorless when the photochromic material is in the closed form and substantially colored when activated by actinic radiation and the photochromic material is in the open form.</p>
<p id="p0115" num="0115">The amount of the photochromic naphthopyrans of the present disclosure to be connected to or incorporated into a coating composition, polymeric material, ophthalmic device, and/or photochromic composition, is not critical provided that a sufficient amount is used to produce the desired optical effect. Generally, such amount may be described as a "photochromic amount". The particular amount of photochromic material used may depend on a variety of factors such as, the absorption characteristics of the photochromic material used, the intensity of color desired upon irradiation thereof, and the method used to incorporate or apply the photochromic material.</p>
<p id="p0116" num="0116">The relative amounts of the aforesaid photochromic materials used in the various methods of the non-limiting embodiments of the present disclosure will vary and depend, in part, upon the relative intensities of the color of the activated species of such materials, the ultimate color desired, the molar absorption coefficient (of "extinction coefficient") for actinic radiation, and the method of application to the polymeric material or substrate. Generally, the amount of total photochromic material incorporated into or connected to a polymeric material or ophthalmic device may range from about 0.05 to about 5.0 milligrams per square centimeter of the surface to which the photochromic material is incorporated into or connected to. The amount of photochromic material incorporated into or connected to a coating composition may range from 0.1 to 40 weight percent based on the weight of the liquid coating composition. The amount of photochromic material incorporated into, i.e., blended with, co-polymerized with, or bonded to, a host polymer<!-- EPO <DP n="62"> --> photochromic composition or photochromic ophthalmic device, such as by a in cast-in-place type method, may range from 0.01 to 40 weight percent based on the weight of the polymeric composition or photochromic ophthalmic device.</p>
<heading id="h0005"><b>EXAMPLES</b></heading>
<p id="p0117" num="0117">The following examples illustrate various non-limiting embodiments of the compositions and methods within the present disclosure and are not restrictive of the invention as otherwise described herein.</p>
<heading id="h0006"><u>Example 1:</u></heading>
<heading id="h0007"><u>Step 1</u></heading>
<p id="p0118" num="0118">2,3-Dimethoxy-7,7-dimethyl-7H-benzo[C]fluoren-5-ol (10g), 1-phenyl-1-(4-morpholinophenyl)-2-propyn-1-ol (13 g), dodecyl benzenesulfonic acid (10 drops), and chloroform (400 mL) were combined in a reaction flask. The reaction mixture was heated at reflux for 3 hours and concentrated. Acetone was added to the residue, and the slurry was filtered, yielding 18 g of off-white solid.</p>
<heading id="h0008"><u>Step 2</u></heading>
<p id="p0119" num="0119">3-Phenyl-3-(4-morpholinophenyl)-6,7-dimethoxy-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran from Step 1 (20 g), 3-piperidinomethanol (7.6 g), and tetrahydrofuran (250 mL) were combined in a dry reaction flask cooled with ice bath under nitrogen atmosphere. Butyl lithium in hexane (2.5 M, 50 mL) was added to the reaction mixture dropwise under stirring. The cooling bath was removed after the addition and the flask was warmed to room temperature. The dark solution was poured into ice water (400 mL) and the mixture was extracted with ethyl acetate (twice with 400 mL). The organic layer was washed with saturated sodium chloride aqueous solution (200 mL), dried over sodium sulfate and concentrated. The residue was purified by silica gel chromatography (ethyl acetate/hexanes (v/v): 1/1.5). The product was obtained as an expanded brown-tinted foam (17 g).</p>
<heading id="h0009"><u>Step 3</u></heading><!-- EPO <DP n="63"> -->
<p id="p0120" num="0120">3-Phenyl-3-(4-morpholinophenyl)-6-methoxy-7-(3-hydroxymethylenepiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran from Step 2 from Step 1 (9 g), 2-isocyanatoethyl methacrylate (3 mL), dibutyltin laureate (5 drops) and ethyl acetate (200 mL) were combined in a reaction flask with a condenser open to air. The mixture was heated at reflux for 30 minutes. Methanol (15 mL) was added to the mixture to quench excess 2-isocyanatoethyl methacrylate. The reaction mixture was concentrated and the residue was purified by silica gel chromatography (ethyl acetate/hexanes (v/v): 1/1). The product was obtained as an expanded purple-tinted foam (11 g). Nuclear magnetic resonance spectroscopy ("NMR") supports the structure of 3-phenyl-3-(4-morpholinophenyl)-6-methoxy-7-(3-(2-methacryloxyethyl)carbamyloxymethylene piperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran.</p>
<heading id="h0010"><u>Example 2:</u></heading>
<heading id="h0011"><u>Step 1</u></heading>
<p id="p0121" num="0121">The procedure of Step 2 of Example 1 was followed except that 4-hydroxypiperidine was used in place of 3-piperidinomethanol. The product was obtained as off-white crystals.</p>
<heading id="h0012"><u>Step 2</u></heading>
<p id="p0122" num="0122">The procedure of Step 3 of Example 1 was followed except that 3-phenyl-3-(4-morphlinophenyl)-6-methoxy-7-(4-hydroxypiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran (from Step 1) was used in place of 3-phenyl-3-(4-morpholinophenyl)-6-methoxy-7-(3-hydroxymethylenepiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran. The product was obtained as purple-tinted crystals. Mass spectrometry supports the molecular weight of 3-phenyl-3-(4-morphlinophenyl)-6-methoxy-7-(4-(2-methacryloxyethyl)carbamyloxypiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran.<!-- EPO <DP n="64"> --></p>
<heading id="h0013"><u>Example 3:</u></heading>
<heading id="h0014"><u>Step</u> 1</heading>
<p id="p0123" num="0123">The procedure of Step 2 of Example 1 was followed except that piperazine was used in place of 3-piperidinomethanol. The product was obtained as purple-tinted crystals.</p>
<heading id="h0015"><u>Step 2</u></heading>
<p id="p0124" num="0124">3-Phenyl-3-(4-morpholinophenyl)-6-methoxy-7-(4-piperazin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran from Step 1 (10 g), 2-isocyanatoethyl methacrylate (3 mL) and ethyl acetate (150 mL) were combined in a dry reaction flask open to air. The mixture was stirred at room temperature for 20 minutes. Methanol (5 mL) was added to the mixture to quench excess 2-isocyanatoethyl methacrylate. The mixture was concentrated and the residue was purified by silica gel chromatography (ethyl acetate/hexanes (v/v): 1/1). After the chromatography, the product was crystallized from ethyl acetate/hexanes (v/v: 1/1) and filtered off as purple-tinted crystals (10 g). Mass spectrometry supports the molecular weight of 3-phenyl-3-(4-morpholinophenyl)-6-methoxy-7-(4-(2-methacryloxyethyl)carbamylpiperazin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran.</p>
<heading id="h0016"><u>Example 4:</u></heading>
<heading id="h0017"><u>Step 1</u></heading>
<p id="p0125" num="0125">4-Hydroxybenzophenone (100 g), 2-chloroethanol (50 g), sodium hydroxide (20 g) and water (500 mL) were combined in a reaction flask. The mixture was heated at reflux for 6 hours. The oily layer was separated and crystallized upon cooling, the crystals were washed with aqueous sodium hydroxide followed by water and dried, yielding 85 g of off-white solid. The product was used without further purification.</p>
<heading id="h0018"><u>Step 2</u></heading><!-- EPO <DP n="65"> -->
<p id="p0126" num="0126">4-(2-Hydroxyethoxy)benzophenone from Step 1 (30 g) was dissolved in anhydrous dimethylformamide (250 mL) in a reaction flask with overhead stirring. Sodium acetylide paste (15 g) in toluene was added to the reaction flask under vigorous stirring. After the reaction was complete, the mixture was added to water (500 mL), and the solution was extracted with ethyl ether (twice with 500 mL). The organic layers were combined and washed with saturated aqueous sodium chloride solution and dried over sodium sulfate. The solution was then filtered and concentrated, and the dark residue was purified by silica gel chromatography (ethyl acetate/hexanes (v/v): 1/1). The product was obtained as a white solid (33 g).</p>
<heading id="h0019"><u>Step</u> 3</heading>
<p id="p0127" num="0127">The procedure of Step1 of Example 1 was followed except that 1-phenyl-1-(4-(2-hydroxyethoxy)phenyl)-2-propyn-1-ol (from Step 2) was used in place of 1-phenyl-1-(4-morpholinophenyl)-2-propyn-1-ol. After the chromatography, the product was precipitated from ethyl acetate/hexanes (v/v: 1/1) and filtered off as a yellow-tinted solid.</p>
<heading id="h0020"><u>Step 4</u></heading>
<p id="p0128" num="0128">The procedure of Step 2 of Example 1 was followed except that 3-phenyl-3-(4-(2-hydroxyethoxy)phenyl)-6,7-dimethoxy-13,13-dimethyl-3H,13H-indeno[2',3':3,4] naphtho[1,2-b]pyran (from Step 3) was used in place of 3-phenyl-3-(4-morpholinophenyl)-6,7-dimethoxy-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran and piperidine was used in place of 3-piperidinomethanol. The product was obtained as a dark-green expanded foam.</p>
<heading id="h0021"><u>Step 5</u></heading>
<p id="p0129" num="0129">The procedure of Step 3 of Example 1 was followed except that 3-phenyl-3-(4-(2-hydroxyethoxy)phenyl)-6-methoxy-7-piperidino-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran (from Step 4) was used in place of 3-phenyl-3-(4-morpholinophenyl)-6-methoxy-7-(3-hydroxymethylenepiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran. The product was obtained<!-- EPO <DP n="66"> --> as a yellow-tinted expanded foam. Mass spectrometry supports the molecular weight of 3-phenyl-3-(4-(2-(2-methacryloxyethyl) carbamyloxyethoxy)phenyl)-6-methoxy-7-piperidino-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran.</p>
<heading id="h0022"><u>Example 5:</u></heading>
<heading id="h0023"><u>Step 1</u></heading>
<p id="p0130" num="0130">4-Fluorobenzophenone (30 g), piperazine (23 g), triethyl amine (23 mL), potassium carbonate (22 g) and dimethyl sulfoxide (50 mL) were combined into a reaction flask, the mixture was heated at reflux for 20 hours. After this time, the mixture was cooled and poured into water, the slurry was extracted with chloroform and the chloroform phase was washed with water twice and dried over sodium sulfate. The solution was concentrated to 45 g of orange oil. The product was used without further purification.</p>
<heading id="h0024"><u>Step 2</u></heading>
<p id="p0131" num="0131">4-Piperazinobenzophenone from Step 1 was dissolved in dimethylformamide (50 mL) in a reaction flask, excess amount of sodium acetylide (9 wt% in toluene) was added portion-wise. After the reaction was complete, the mixture was poured into water, the mixture was then extracted with ethyl acetate, and the organic layer was dried over sodium sulfate. The solution was filtered and concentrated. The residue was purified, by silica gel chromatography (ethyl acetate/methanol (v/v): 1/1), yielding 17 g of a yellow solid.</p>
<heading id="h0025"><u>Step 3</u></heading>
<p id="p0132" num="0132">The procedure of Step 1 of Example 1 was followed except that 3,9-dimethoxy-7,7-dimethyl-7H-benzo[C]-fluoren-5-ol was used in place of 2,3-dimethoxy-7,7-dimethyl-7H-benzo[C]-fluoren-5-ol and 1-phenyl-1-(4-piperazinophenyl)-2-propyn-1-ol was used in place of 1-phenyl-1-(4-morpholinophenyl)-2-propyn-1-ol.<!-- EPO <DP n="67"> --> After the chromatography, the product was precipitated from acetone/methanol (v/v: 1/1) and filtered off as a green-tinted solid.</p>
<heading id="h0026"><u>Step 4</u></heading>
<p id="p0133" num="0133">Phenyl-3-(4-piperazinophenyl)-6,11-dimethoxy-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran from Step 3 (1 g),2-isocyanatoethyl methacrylate (1.5 mL) and ethyl acetate (30 mL) were combined in a dry reaction flask. The mixture was stirred at room temperature for 1 hour. Methanol (5 mL) was added to the quench excess 2-isocyanatoethyl methacrylate. The mixture was concentrated and the residue was purified by silica gel chromatography (ethyl acetate/hexanes (v/v): 1/1). The product was obtained as a green expanded foam. Mass spectrometry supports the molecular weight of 3-phenyl-3-(4-(4-(2-methacryloxyethyl) carbamylpiperazin-1-yl)phenyl)-6,11-dimethoxy-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran.</p>
<heading id="h0027"><u>Example 6:</u></heading>
<heading id="h0028"><u>Step 1</u></heading>
<p id="p0134" num="0134">4-Fluorobenzophenone (20g) and 1-(2-hydroxyethyl)piperazine (40g) were heated to 160°C in 200ml of DMSO for 3 hours. The mixture was poured into water (1 L) and the solid collected by filtration. The solid was washed with water, dried, slurried in hexane, and dried again. The off-white solid (25g) was used in the next step without further purification.</p>
<heading id="h0029"><u>Step 2</u></heading>
<p id="p0135" num="0135">4-(4-(2-Hydroxyethyl)piperazin-1-yl)-benzophenone from Step 1 (25 g) was dissolved in dimethylformamide (50 mL) in a reaction flask and excess amount of sodium acetylide (9 wt% in toluene) was added portion-wise. After the reaction was complete, the mixture was poured into water, and 20 g of white solid was filtered off.</p>
<heading id="h0030"><u>Step 3</u></heading><!-- EPO <DP n="68"> -->
<p id="p0136" num="0136">The procedure of Step 2 of Example 1 was followed except that 7,7-dimethyl-7H-benzo[C]fluoren-5-ol was used in place of 2,3-dimethoxy-7,7-dimethyl-7H-benzo[C]fluoren-5-ol and 1-phenyl-1-(4-(4-(2-hydroxyethylpiperazin-1-yl)phenyl)-2-propyn-1-ol (from Step 2) was used in place of 1-phenyl-1-(4-morpholinophenyl)-2-propyn-1-ol. The product was isolated by column chromatography, eluting with ethyl acetate/methanol 80/20 (v/v), and crystallized from methanol as an off-white solid.</p>
<heading id="h0031"><u>Step 4</u></heading>
<p id="p0137" num="0137">The procedure of Step 3 of Example 1 was followed except that 3-phenyl-3-(4-(4-(2-hydroxyethyl)piperazin-1-yl)phenyl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran (from Step 3) was used in place of 3-phenyl-3-(4-morpholinophenyl)-6-methoxy-7-(3-hydroxymethylenepiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran. Successive chromatographic separations with chloroform/methanol 90/10 (v/v), and with ethyl acetate/methanol 95/5 (v/v), yielded a pure oil that was isolated as a purple-tinted expanded foam. Mass spectrometry supports the molecular weight of 3-phenyl-3-(4-(4-(2-(2-methacryloxyethyl)carbamyloxyethyl)piperazin-1-yl)phenyl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran.</p>
<heading id="h0032"><u>Example 7:</u></heading>
<heading id="h0033"><u>Step 1</u></heading>
<p id="p0138" num="0138">The procedure of Step 1 of Example 1 was followed except that 1-phenyl-1-(4-methoxyphenyl)-2-propyn-1-ol was used in place of 1-phenyl-1-(4-morpholinophenyl)-2-propyn-1-ol. The product was obtained as off-white crystals.</p>
<heading id="h0034"><u>Step 2</u></heading>
<p id="p0139" num="0139">The procedure of Step 2 of Example 1 was followed except that 3-phenyl-3-(4-methoxyphenyl)-6,7-dimethoxy-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran (from Step 1) was used in place of 3-phenyl-3-(4-morpholinophenyl)-6,7-dimethoxy-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran<!-- EPO <DP n="69"> --> and 4-hydroxypiperidine was used in place of 3-piperidinomethanol. After the chromatography, the product was crystallized from ethyl ether/methanol/hexanes (1/1/1), yielding yellow-tinted crystals.</p>
<heading id="h0035"><u>Step 3</u></heading>
<p id="p0140" num="0140">3-Phenyl-3-(4-methoxyphenyl)-6-methoxy-7-(4-hydroxypiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran from Step 2 (1 g), succinic anhydride (0.3 g), triethyl amine (0.5 mL) and toluene (20 mL) were combined in a dry reaction flask. The mixture was heated at reflux for 7 hours. Water (50 mL) was added to the solution and the mixture was partitioned. The toluene layer was washed with saturated sodium chloride aqueous solution and dried over sodium sulfate. The solution was concentrated and the residue was purified by silica gel chromatography (ethyl acetate/hexanes (v/v): 2/1), yielding 1.2 g of an expanded yellow-tinted foam.</p>
<heading id="h0036"><u>Step 4</u></heading>
<p id="p0141" num="0141">3-Phenyl-3-(4-methoxyphenyl)-6-methoxy-7-(4-(2-hydroxycarbonylethyl) carboxypiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran from Step 3 (1.2 g), poly(ethylene glycol) methacrylate (average molecular weight 360, 1 mL), dicyclohexyl carbodiimide (0.7 g), 4-(dimethylamino)-pyridine (0.4 g) and methylene chloride (10 mL) were combined in a dry reaction flask. The mixture was heated at reflux for 5 hours and filtered. The solution was concentrated and the residue was purified by silica gel chromatography (ethyl acetate/hexanes (vlv): 1/1), yielding 1.8 g of oily mixture. MS indicates the major components have 5 to 8 ethoxy groups in the polyethylene glycol chain including the compound 3-phenyl-3-(4-methoxyphenyl)-6-methoxy-7-(4-(2-(2-(2-(2-(2-(2-(2-methacryloxyethoxy)ethoxy)ethoxy)ethoxy)ethoxy)ethoxy)carbonylethyl)carboxypiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran.<!-- EPO <DP n="70"> --></p>
<heading id="h0037"><u>Example 8:</u></heading>
<heading id="h0038"><u>Step 1</u></heading>
<p id="p0142" num="0142">The procedure of Step 3 of Example 7 was followed except that 3-phenyl-3-(4-morpholinophenyl)-6-methoxy-7-(4-(3-hydroxymethylenepiperidin)-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran (from Step 2 of Example 1) was used in place of 3-phenyl-3-(4-methoxyphenyl)-6-methoxy-7-(4-hydroxypiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran. The product was obtained as a purple-tinted expanded foam.</p>
<heading id="h0039"><u>Step 2</u></heading>
<p id="p0143" num="0143">The procedure of Step 4 of Example 7 was followed except that 3-phenyl-3-(4-morpholinophenyl)-6-methoxy-7-(4-(2-hydroxycarbonylethyl)carboxymethylenepiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran (from Step 1) was used in place of 3-phenyl-3-(4-methoxyphenyl)-6-methoxy-7-(4-(2-hydroxycarbonylethyl) carboxypiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran. The product was obtained as an oily mixture. Mass spectrometry indicates the major component is with 5 to 8 ethoxy groups in the ethylene glycol chain including 3-phenyl-3-(4-morpholinophenyl)-6-methoxy-7-(3-(2-(2-(2-(2-(2-(2-(2-methacryloxyethoxy)ethoxy)ethoxy)ethoxy)ethoxy)ethoxy)carbonylethyl)carboxymethylenepiperidin-1-yl)-13,13-dimethyl-3H,13H-mdeno[2',3':3,4]naphtho[1,2-b]pyran.</p>
<heading id="h0040"><u>Example 9:</u></heading>
<heading id="h0041"><u>Step 1</u></heading>
<p id="p0144" num="0144">The procedure of Step 4 of Example 4 was followed except that morpholine was used in place of 3-piperidine. After the chromatography, the product was recrystallized from t-butyl methyl ether/hexanes (2/1), yielding off-white crystals.</p>
<heading id="h0042"><u>Step 2</u></heading><!-- EPO <DP n="71"> -->
<p id="p0145" num="0145">The procedure of Step 3 of Example 7 was followed except that 3-phenyl-3-(4-(2-hydroxyethoxy)phenyl)-6-methoxy-7-morpholino-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran (from Step 1) was used in place of 3-phenyl-3-(4-methoxyphenyl)-6-methoxy-7-(4-hydroxypiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran. The product was obtained as a brown expanded foam.</p>
<heading id="h0043"><u>Step 3</u></heading>
<p id="p0146" num="0146">The procedure of Step 4 of Example 7 was followed except that 3-phenyl-3-(4-(2-(2-hydroxycarbonylethyl)carboxy)phenyl)-6-methoxy-7-morpholino-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran (from Step 2) was used in place of 3-phenyl-3-(4-methoxyphenyl)-6-methoxy-7-(4-(2-hydroxycarbonylethyl)carboxypiperidin-1-yl)-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran. The product was obtained as an oily mixture. Mass spectrometry indicates the major component is with 5 to 8 ethoxy groups in the ethylene glycol chain including 3-phenyl-3-(4-(2-(2-(2-(2-(2-(2-(2-(2-methacryloxyethoxy)ethoxy)ethoxy)ethoxy)ethoxy)ethoxy)carbonylethyl)carboxyethoxy) phenyl)-6-methoxy-7-morpholino-13,13-dimethyl-3H,13H-indeno[2',3':3,4]naphtho[1,2-b]pyran.</p>
<heading id="h0044"><u>Example 10:</u> Synthesis of Photochromic Polymer Test Square and Photochromic Performance Testing</heading>
<heading id="h0045"><u>Photochromic Performance Testing</u></heading>
<p id="p0147" num="0147">The photochromic performance of the photochromic materials of Examples 1-9 was tested as follows.</p>
<p id="p0148" num="0148">A quantity of the photochromic material to be tested calculated to yield a 1.5 x 10<sup>-3</sup> molal solution was added to a flask containing 50 grams of a monomer blend of 4 parts ethoxylated bisphenol A dimethacrylate (BPA 2EO DMA), 1 part poly(ethylene glycol) 600 dimethacrylate, and 0.033 weight percent 2,2'-azobis(2-methyl propionitrile) (AIBN). The photochromic material was dissolved into the<!-- EPO <DP n="72"> --> monomer blend by stirring and gentle heating. After a clear solution was obtained, it was poured into a flat sheet mold having the interior dimensions of 2.2 mm x 6 inches (15.24 cm) x 6 inches (15.24 cm). The mold was sealed and placed in a horizontal airflow, programmable oven programmed to increase the temperature from 40°C to 95°C over a 5 hour interval, hold the temperature at 95°C for 3 hours and then lower it to 60°C for at least 2 hours. The methacrylate terminated photochromic dyes were copolymerized into the sheet after this period of time. After the mold was opened, the polymer sheet was cut using a diamond blade saw into 2 inch (5.1 cm) test squares.</p>
<p id="p0149" num="0149">The photochromic test squares prepared as described above were tested for photochromic response on an optical bench. Prior to testing on the optical bench, the photochromic test squares were exposed to 365 nm ultraviolet light for about 15 minutes to cause the photochromic material to transform from the unactivated (or bleached) state to an activated (or colored) state, and then placed in a 76°C oven for about 15 minutes to allow the photochromic material to revert back to the bleached state. The test squares were then cooled to room temperature, exposed to fluorescent room lighting for at least 2 hours, and then kept covered (that is, in a dark environment) for at least 2 hours prior to testing on an optical bench maintained at 24°C. The bench was fitted with a 300-watt xenon arc lamp, a remote controlled shutter, a KG-2 filter acting as a heat sink for the arc lamp, and neutral density filter(s). The sample holder in which the square to be tested was situated in a water bath which was kept at 23°C. A collimated beam of light from a tungsten lamp was passed through the square at a small angle (approximately 30°) normal to the square. After passing through the square, the light from the tungsten lamp was directed to a collection sphere, avoiding collecting scattered light and reblend light beam. From the collection sphere the light travels via a fiber optic cable to an Ocean Optics S2000 spectrophotometer where the resulting spectrum was measured at the visible lambda max ("λ<sub>max-vis</sub>") of the photochromic material being tested. The λ<sub>max-vis</sub> is the wavelength in the visible spectrum at which the maximum absorption of the<!-- EPO <DP n="73"> --> activated (colored) form of the photochromic compound in a test square occurs. The λ<sub>max-vis</sub> wavelength was determined by testing the photochromic test squares in a Varian Cary 4000 UV-Visible spectrophotometer. The output signals from the detector were processed by a radiometer.</p>
<p id="p0150" num="0150">The saturated optical density ("Sat'd OD") for each test square was determined by opening the shutter from the xenon lamp and measuring the transmittance after exposing the test chip to UV radiation for 30 minutes. The xenon beam is set to 1 W/m<sup>2</sup> for measurements of this class of dyes, however, in some instances, a power setting of 3 W/m<sup>2</sup> was used. Irradiance was adjusted by varying the neutral density filter at the light source and by adjusting lamp output. The First Fade Half Life ("T<sub>1/2</sub>") is the time interval in seconds for the absorbance of the activated form of the photochromic material in the test squares to reach one half the Sat'd OD absorbance value at room temperature (24°C), after removal of the source of activating light. Results for the photochromic materials tested are listed below in Table 1.
<tables id="tabl0001" num="0001">
<table frame="all">
<title>Table 1: Photochromic Test Data</title>
<tgroup cols="4">
<colspec colnum="1" colname="col1" colwidth="23mm"/>
<colspec colnum="2" colname="col2" colwidth="25mm"/>
<colspec colnum="3" colname="col3" colwidth="35mm"/>
<colspec colnum="4" colname="col4" colwidth="36mm"/>
<thead>
<row>
<entry align="center" valign="top">Example No.</entry>
<entry align="center" valign="top">λ<sub>max-vis</sub> (nm)</entry>
<entry align="center" valign="top">Sat'dOD (at λ<sub>max-vis</sub>)</entry>
<entry align="center" valign="top">T<sub>1/2</sub> (sec) (at λ<sub>max-vis</sub>)</entry></row></thead>
<tbody>
<row>
<entry align="center">1</entry>
<entry align="center">502</entry>
<entry align="char" char="." charoff="6">1.09</entry>
<entry align="center">952</entry></row>
<row>
<entry align="center">2</entry>
<entry align="center">501</entry>
<entry align="char" char="." charoff="6">1.01</entry>
<entry align="center">836</entry></row>
<row>
<entry align="center">3*</entry>
<entry align="center">495</entry>
<entry align="char" char="." charoff="6">1.52</entry>
<entry align="center">738</entry></row>
<row>
<entry align="center">4</entry>
<entry align="center">475</entry>
<entry align="char" char="." charoff="6">1.37</entry>
<entry align="center">1731</entry></row>
<row>
<entry align="center">5</entry>
<entry align="center">612</entry>
<entry align="char" char="." charoff="6">0.94</entry>
<entry align="center">1145</entry></row>
<row>
<entry align="center">6*</entry>
<entry align="center">587</entry>
<entry align="char" char="." charoff="6">1.21</entry>
<entry align="center">317</entry></row>
<row>
<entry align="center">7</entry>
<entry align="center">470</entry>
<entry align="char" char="." charoff="6">1.17</entry>
<entry align="center">1028</entry></row>
<row>
<entry align="center">8</entry>
<entry align="center">502</entry>
<entry align="char" char="." charoff="6">1.16</entry>
<entry align="center">780</entry></row>
<row>
<entry align="center">9</entry>
<entry align="center">459</entry>
<entry align="char" char="." charoff="6">1.52</entry>
<entry align="center">776</entry></row></tbody></tgroup>
<tgroup cols="4" rowsep="0">
<colspec colnum="1" colname="col1" colwidth="23mm"/>
<colspec colnum="2" colname="col2" colwidth="25mm"/>
<colspec colnum="3" colname="col3" colwidth="35mm"/>
<colspec colnum="4" colname="col4" colwidth="36mm"/>
<tbody>
<row>
<entry namest="col1" nameend="col4" align="justify">*tested under 3W irradiation</entry></row></tbody></tgroup>
</table>
</tables><!-- EPO <DP n="74"> --></p>
<heading id="h0046"><b>Example 11</b></heading>
<p id="p0151" num="0151">Under a nitrogen atmosphere, about 100 mg of a blend of 91 % (wt) 2-hydroxyethyl methacrylate, 2.2 % methacrylic acid, 0.83 % ethyleneglycol dimethacrylate, 0.1 % trimethylolpropane trimethacrylate, 0.55 % 2,2'-azobisisobutyronitrile and 0.5 % CGI 819 (bis(2,4,6-trimethylbenzoyl)-phenyl phosphine oxide photoinitiator, commercially available from Ciba Specialty Chemicals), and 5.25% of the photochromic compound made in Example 2, were combined with Glucam E-20 diluent (poly(oxy-1,2-ethanediyl), .alpha.-hydro-.omega.-hydroxy-, ether with methyl D-glucopyranoside, Ave. MW 1074 g/mole in a ratio of 50 weight parts, commercially available from Chemron Corporation) to 50 weight parts reactive monomers, and placed into each front curve mold. Back curve molds were placed onto the front curve molds and lenses were formed by curing the mixture under visible light from fluorescent bulbs (Philips TLK03/40W) for about 20 minutes at about 50°C. The molds were removed from the light and placed in an oven that was heated to 70°C for about 3 hours. The molds were removed from the oven and promptly pried open while still hot. The lenses were released from the molds by immersing them in an aqueous solution of 0.16 weight % disodium EDTA and 0.02 weight % Tween<sup>®</sup> 80 (polyoxyethylene(20) sorbitan monooleate, commercially available from Aldrich Chemicals) at about 70°C for about 30 minutes. The lenses were rinsed in borate-buffered saline solution. The final lenses were uniform in shape.</p>
</description>
<claims id="claims01" lang="en"><!-- EPO <DP n="75"> --><!-- EPO <DP n="76"> -->
<claim id="c-en-01-0001" num="0001">
<claim-text>An ophthalmic device comprising at least one photochromic material represented by:
<chemistry id="chem0028" num="0028"><img id="ib0028" file="imgb0028.tif" wi="163" he="58" img-content="chem" img-format="tif"/></chemistry>
<chemistry id="chem0029" num="0029"><img id="ib0029" file="imgb0029.tif" wi="165" he="64" img-content="chem" img-format="tif"/></chemistry>
or a mixture thereof, wherein,
<claim-text>(a) R<sub>1</sub> is:
<claim-text>a reactive substituent R, wherein said reactive substituent R is represented by one of:
<claim-text>-A-D-E-G-J;</claim-text>
<claim-text>-G-E-G-J;</claim-text>
<claim-text>-D-E-G-J;</claim-text>
<claim-text>-A-D-J;</claim-text>
<claim-text>-D-G-J; and</claim-text>
<claim-text>-D-J;</claim-text></claim-text>
wherein<br/>
-A- is -C(=O)-, -OC(=O)-, -NHC(=O)-, or -CH<sub>2</sub>-;<br/>
<!-- EPO <DP n="77"> -->-D- is: a diamine residue or a derivative thereof, said diamine residue being an aliphatic diamine residue, a cyclo aliphatic diamine residue, a diazacycloalkane residue, an azacyclo aliphatic amine residue, a diazacrown ether residue, or an aromatic diamine residue, wherein a first amine nitrogen of said diamine residue forms a bond with -A-, structure I, structure II, structure III, or structure IV, and a second amine nitrogen of said diamine residue forms a bond with -E-, -G-, or -J; or an amino alcohol residue or a derivative thereof, said amino alcohol residue being an aliphatic amino alcohol residue, a cyclo aliphatic amino alcohol residue, an azacyclo aliphatic alcohol residue, a diazacyclo aliphatic alcohol residue, or an aromatic amino alcohol residue, wherein an amine nitrogen of said amino alcohol residue forms a bond with -A-, structure I, structure II, structure III, or structure IV, and an alcohol oxygen of said amino alcohol residue forms a bond with -E-, -G-, or -J, or said amine nitrogen of said amino alcohol residue forms a bond with -E-, -G-, or -J, and said alcohol oxygen of said amino alcohol residue forms a bond with -A-, structure I, structure II, structure III, or structure IV;<br/>
-E- is a dicarboxylic acid residue or a derivative thereof, said dicarboxylic acid residue being an aliphatic dicarboxylic acid residue, a cycloaliphatic dicarboxylic acid residue, or an aromatic dicarboxylic acid residue, wherein a first carbonyl group of said dicarboxylic acid residue forms a bond with -G- or -D-, and a second carbonyl group of said dicarboxylic acid residue forms a bond with -G-;<br/>
each -G- is independently: -[(OC<sub>2</sub>H<sub>4</sub>)<sub>x</sub>(OC<sub>3</sub>H<sub>6</sub>)<sub>y</sub>(OC<sub>4</sub>H<sub>8</sub>)<sub>z</sub>]-O-, wherein x, y, and z, are each independently a number between 0 and 50, and the sum of x, y, and z ranges from 1 to 50; or a polyol residue or a derivative thereof, said polyol residue being an aliphatic polyol residue, a cyclo aliphatic polyol residue, or an aromatic polyol residue, wherein a first polyol oxygen of said polyol residue forms a bond with -E-, -D-, structure I, structure II, structure III, or structure IV, and a second polyol oxygen of said polyol residue forms a bond with -E- or -J; and<br/>
-J is a group comprising acryl, methacryl, crotyl, 2-(methacryloxy) ethylcarbamyl, 2-(methacryloxy)ethoxycarbonyl, 4-vinylphenyl, vinyl, 1-chlorovinyl, or epoxy, or -J is hydrogen, provided that if -J is hydrogen, -J is bonded to an oxygen of group -D- or -G-;<br/>
or R<sub>1</sub> is hydrogen; hydroxyl; C<sub>1</sub>-C<sub>3</sub> alkyl; or the group -C(=O)W, wherein W is -OR<sub>7</sub>, -N(R<sub>8</sub>)R<sub>9</sub>, piperidino or morpholino, wherein R<sub>7</sub> is allyl, C<sub>1</sub>-C<sub>6</sub> alkyl, phenyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl,<!-- EPO <DP n="78"> --> phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy(C<sub>2</sub>-C<sub>4</sub>)alkyl or C<sub>1</sub>-C<sub>6</sub> haloalkyl, R<sub>8</sub> and R<sub>9</sub> are each independently C<sub>1</sub>-C<sub>6</sub> alkyl, C<sub>5</sub>-C<sub>7</sub> cycloalkyl, phenyl, mono-substituted phenyl, or di-substituted phenyl, wherein said phenyl substituents are C<sub>1</sub>-C<sub>6</sub> alkyl or C<sub>1</sub>-C<sub>6</sub> alkoxy, and said halo substituent is chloro or fluoro;</claim-text>
<claim-text>(b) R<sub>1</sub>' is: the reactive substituent R; hydrogen; hydroxy; C<sub>1</sub>-C<sub>3</sub> alkyl; or the group -C(=O)W, wherein W is -OR<sub>7</sub>, -N(R<sub>8</sub>)R<sub>9</sub>, piperidino or morpholino, wherein R<sub>7</sub> is allyl, C<sub>1</sub>-C<sub>6</sub> alkyl, phenyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl, phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy(C<sub>2</sub>-C<sub>4</sub>)alkyl or C<sub>1</sub>-C<sub>6</sub> haloalkyl, and R<sub>8</sub> and R<sub>9</sub> are each independently C<sub>1</sub>-C<sub>6</sub> alkyl, C<sub>5</sub>-C<sub>7</sub> cycloalkyl, phenyl, mono-substituted phenyl, or di-substituted phenyl, wherein said phenyl substituents are C<sub>1</sub>-C<sub>6</sub> alkyl or C<sub>1</sub>-C<sub>6</sub> alkoxy, and said halo substituent is chloro or fluoro;</claim-text>
<claim-text>(c) R<sub>2</sub> is: the reactive substituent R; hydrogen; C<sub>1</sub>-C<sub>6</sub> alkyl; C<sub>3</sub>-C<sub>7</sub> cycloalkyl; substituted or unsubstituted phenyl; or -OR<sub>10</sub>; or -OC(=O)R<sub>10</sub>, wherein R<sub>10</sub> is hydrogen, C<sub>1</sub>-C<sub>6</sub> alkyl, phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, (C<sub>1</sub>-C<sub>6</sub>)alkoxy(C<sub>2</sub>-C<sub>4</sub>)alkyl, C<sub>3</sub>-C<sub>7</sub> cycloalkyl, or mono(C<sub>1</sub>-C<sub>4</sub>)alkyl substituted C<sub>3</sub>-C<sub>7</sub> cycloalkyl, and said phenyl substituents are C<sub>1</sub>-C<sub>6</sub> alkyl or C<sub>1</sub>-C<sub>6</sub> alkoxy;</claim-text>
<claim-text>(d) n is an integer ranging from 0 to 4, where R<sub>3</sub> and R<sub>4</sub> are independently for each occurrence: the reactive substituent R; hydrogen; fluoro; chloro; C<sub>1</sub>-C<sub>6</sub> alkyl; C<sub>3</sub>-C<sub>7</sub> cycloalkyl; substituted or unsubstituted phenyl; -OR<sub>10</sub>; or -OC(=O)R<sub>10</sub>, wherein R<sub>10</sub> is hydrogen, C<sub>1</sub>-C<sub>6</sub> alkyl, phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, (C<sub>1</sub>-C<sub>6</sub>)alkoxy(C<sub>2</sub>-C<sub>4</sub>)alkyl, C<sub>3</sub>-C<sub>7</sub> cycloalkyl, or mono(C<sub>1</sub>-C<sub>4</sub>)alkyl substituted C<sub>3</sub>-C<sub>7</sub> cycloalkyl, and said phenyl substituents are C<sub>1</sub>-C<sub>6</sub> alkyl or C<sub>1</sub>-C<sub>6</sub> alkoxy; a mono-substituted phenyl, said phenyl having a substituent located at the para position, wherein the substituent is: a dicarboxylic acid residue or derivative thereof, a diamine residue or derivative thereof, an amino alcohol residue or derivative thereof, a polyol residue or a derivative thereof,-CH<sub>2</sub>-, -(CH<sub>2</sub>)<sub>t</sub>-, or -[O-(CH<sub>2</sub>)<sub>t</sub>]<sub>k</sub>-, wherein t is the integer 2, 3, 4, 5 or 6 and k is an integer from 1 to 50, the substituent being connected to an aryl group on another photochromic material; -N(R<sub>11</sub>)R<sub>12</sub> wherein R<sub>11</sub> and R<sub>12</sub> are each independently hydrogen, C<sub>1</sub>-C<sub>8</sub> alkyl,<!-- EPO <DP n="79"> --> phenyl, naphthyl, furanyl, benzofuran-2-yl, benzofuran-3-yl, thienyl, benzothien-2-yl, benzothien-3-yl, dibenzofuranyl, dibenzothienyl, benzopyridyl, fluorenyl, C<sub>1</sub>-C<sub>8</sub> alkylaryl, C<sub>3</sub>-C<sub>20</sub> cycloalkyl, C<sub>4</sub>- C<sub>20</sub> bicycloalkyl, C<sub>5</sub>- C<sub>20</sub> tricycloalkyl or C<sub>1</sub>- C<sub>20</sub> alkoxyalkyl, wherein said aryl group is phenyl or naphthyl, or R<sub>11</sub> and R<sub>12</sub> come together with the nitrogen atom to form a C<sub>3</sub>-C<sub>20</sub> hetero-bicycloalkyl ring or a C<sub>4</sub>-C<sub>20</sub> heterotricycloalkyl ring; a nitrogen containing ring represented by the following graphic formula VA:
<chemistry id="chem0030" num="0030"><img id="ib0030" file="imgb0030.tif" wi="76" he="36" img-content="chem" img-format="tif"/></chemistry>
wherein each Y is independently chosen for each occurrence from -CH<sub>2</sub>-, -CH(R<sub>13</sub>)-, -C(R<sub>13</sub>)<sub>2</sub>-, -CH(aryl)-, -C(aryl)<sub>2</sub>-, and -C(R<sub>13</sub>)(aryl)-, and Z is -Y-, -O-, -S-, -S(O)-, -SO<sub>2</sub>-, -NH-, -N(R<sub>13</sub>)-, or -N(aryl)-, wherein each R<sub>13</sub> is independently C<sub>1</sub>-C<sub>6</sub> alkyl, each aryl is independently phenyl or naphthyl, m is an integer 1, 2 or 3, and p is an integer 0, 1, 2, or 3 and when p is 0, Z is Y; a group represented by one of the following graphic formulae VB or VC:
<chemistry id="chem0031" num="0031"><img id="ib0031" file="imgb0031.tif" wi="133" he="39" img-content="chem" img-format="tif"/></chemistry>
wherein R<sub>15</sub>, R<sub>16</sub>, and R<sub>17</sub> are each independently hydrogen, C<sub>1</sub>-C<sub>6</sub> alkyl, phenyl, or naphthyl, or the groups R<sub>15</sub> and R<sub>16</sub> together form a ring of 5 to 8 carbon atoms and each R<sub>14</sub> is independently for each occurrence C<sub>1</sub>-C<sub>6</sub> alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy, fluoro or chloro and p is an integer 0, 1, 2, or 3; and unsubstituted, mono-, or di-substituted C<sub>4</sub>-C<sub>18</sub> spirobicyclic amine, or unsubstituted, mono-, and di-substituted C<sub>4</sub>-C<sub>18</sub> spirotricyclic amine, wherein said substituents are independently aryl, C<sub>1</sub>-C<sub>6</sub> alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy, or phenyl(C<sub>1</sub>-C<sub>6</sub>)alkyl; or<br/>
an R<sub>3</sub> group in the 6-position and an R<sub>3</sub> group in the 7-position together form a group represented by one of VD and VE:<!-- EPO <DP n="80"> -->
<chemistry id="chem0032" num="0032"><img id="ib0032" file="imgb0032.tif" wi="135" he="30" img-content="chem" img-format="tif"/></chemistry>
wherein T and T' are each independently oxygen or the group -NR<sub>11</sub>-, where R<sub>11</sub>, R<sub>15</sub>, and R<sub>16</sub> are as set forth above;</claim-text>
<claim-text>(e) R<sub>5</sub> and R<sub>6</sub> are each independently the reactive substituent R; hydrogen; hydroxy; C<sub>1</sub>-C<sub>6</sub> alkyl; C<sub>3</sub>-C<sub>7</sub> cycloalkyl; allyl; substituted or unsubstituted phenyl; substituted or unsubstituted benzyl; chloro; fluoro; the group -C(=O)W', wherein W' is hydrogen, hydroxy, C<sub>1</sub>-C<sub>6</sub> alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy, the unsubstituted, mono-or di-substituted aryl groups phenyl or naphthyl, phenoxy, mono- or di-(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenoxy, mono- or di-(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenoxy, amino, mono(C<sub>1</sub>-C<sub>6</sub>)alkylamino, di(C<sub>1</sub>-C<sub>6</sub>)alkylamino, phenylamino, mono- or di-(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenylamino, or mono- or di-(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenylamino; -OR<sub>18</sub>, wherein R<sub>18</sub> is C<sub>1</sub>-C<sub>6</sub> alkyl, phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy(C<sub>2</sub>-C<sub>4</sub>)alkyl, C<sub>3</sub>-C<sub>7</sub> cycloalkyl, mono(C<sub>1</sub>-C<sub>4</sub>)alkyl substituted C<sub>3</sub>-C<sub>7</sub> cycloalkyl, C<sub>1</sub>-C<sub>6</sub> chloroalkyl, C<sub>1</sub>-C<sub>6</sub> fluoroalkyl, allyl, or the group -CH(R<sub>19</sub>)Y', wherein R<sub>19</sub> is hydrogen or C<sub>1</sub>-C<sub>3</sub> alkyl and Y' is CN, CF<sub>3</sub>, or COOR<sub>20</sub>, wherein R<sub>20</sub> is hydrogen or C<sub>1</sub>-C<sub>3</sub> alkyl, or R<sub>18</sub> is the group, -C(=O)W", wherein W" is hydrogen, C<sub>1</sub>-C<sub>6</sub> alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy, the unsubstituted, mono- or di-substituted aryl groups phenyl or naphthyl, phenoxy, mono-or di-(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenoxy, mono- or di-(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenoxy, amino, mono(C<sub>1</sub>-C<sub>6</sub>)alkylamino, di(C<sub>1</sub>-C<sub>6</sub>)alkylamino, phenylamino, mono- or di-(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenylamino, or mono- or di-(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenylamino, wherein each of said phenyl, benzyl, or aryl group substituents are independently C<sub>1</sub>-C<sub>6</sub> alkyl or C<sub>1</sub>-C<sub>6</sub> alkoxy; or a mono-substituted phenyl, said phenyl having a substituent located at the para position, wherein the substituent is: a dicarboxylic acid residue or derivative thereof, a diamine residue or derivative thereof, an amino alcohol residue or derivative thereof, a polyol residue or derivative thereof, -CH<sub>2</sub>-, -(CH<sub>2</sub>)<sub>t</sub>-, or -[O-(CH<sub>2</sub>)<sub>t</sub>]<sub>k</sub>-, wherein t is from an integer 2, 3, 4, 5 or 6 and k is an integer from 1 to 50, the substituent being connected to an aryl group on another photochromic material; or R<sub>5</sub> and R<sub>6</sub> together form an oxo group, a spiro-carbocyclic group containing 3 to 6 carbon atoms, or a spiro-heterocyclic group containing 1 to 2<!-- EPO <DP n="81"> --> oxygen atoms and 3 to 6 carbon atoms including the spirocarbon atom, said spiro-carbocyclic and spiro-heterocyclic groups being annellated with 0, 1 or 2 benzene rings; and</claim-text>
<claim-text>(f) B and B' are each independently a substituted phenyl; a substituted aryl; a substituted 9-julolidinyl; a substituted heteroaromatic group chosen from pyridyl, furanyl, benzofuran-2-yl, benzofuran-3-yl, thienyl, benzothien-2-yl, benzothien-3-yl, dibenzofuranyl, dibenzothienyl, carbazoyl, benzopyridyl, indolinyl, and fluorenyl, wherein the phenyl, aryl, 9-julolidinyl, or heteroaromatic substituent is the reactive substituent R; an unsubstituted, mono-, di-, or tri-substituted phenyl or aryl group; 9-julolidinyl; or an unsubstituted, mono- or di-substituted heteroaromatic group chosen from pyridyl, furanyl, benzofuran-2-yl, benzofuran-3-yl, thienyl, benzothien-2-yl, benzothien-3-yl, dibenzofuranyl, dibenzothienyl, carbazoyl, benzopyridyl, indolinyl, and fluorenyl, wherein each of the phenyl, aryl and heteroaromatic substituents are each independently: hydroxyl, a group -C(=O)R<sub>21</sub>, wherein R<sub>21</sub> is -OR<sub>22</sub>, -N(R<sub>23</sub>)R<sub>24</sub>, piperidino, morpholino, wherein R<sub>22</sub> is allyl, C<sub>1</sub>-C<sub>6</sub> alkyl, phenyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl, phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkyl substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, mono(C<sub>1</sub>-C<sub>6</sub>)alkoxy substituted phenyl(C<sub>1</sub>-C<sub>3</sub>)alkyl, C<sub>1</sub>-C<sub>6</sub> alkoxy(C<sub>2</sub>-C<sub>4</sub>)alkyl or C<sub>1</sub>-C<sub>6</sub> haloalkyl, R<sub>23</sub> and R<sub>24</sub> are each independently C<sub>1</sub>-C<sub>6</sub> alkyl, C<sub>5</sub>-C<sub>7</sub> cycloalkyl, phenyl or substituted phenyl, the phenyl substituents being C<sub>1</sub>-C<sub>6</sub> alkyl or C<sub>1</sub>-C<sub>6</sub> alkoxy, and said halo substituent is chloro or fluoro, aryl, mono(C<sub>1</sub>-C<sub>12</sub>)alkoxyaryl, di(C<sub>1</sub>-C<sub>12</sub>)alkoxyaryl, mono (C<sub>1</sub>-C<sub>12</sub>)alkylaryl, di(C<sub>1</sub>-C<sub>12</sub>)alkylaryl, haloaryl, C<sub>3</sub>-C<sub>7</sub> cycloalkylaryl, C<sub>3</sub>-C<sub>7</sub> cycloalkyl, C<sub>3</sub>-C<sub>7</sub> cycloalkyloxy, C<sub>3</sub>-C<sub>7</sub> cycloalkyloxy(C<sub>1</sub>-C<sub>12</sub>)alkyl, C<sub>3</sub>-C<sub>7</sub> cycloalkyloxy(C<sub>1</sub>-C<sub>12</sub>)alkoxy, aryl(C<sub>1</sub>-C<sub>12</sub>)alkyl, aryl(C<sub>1</sub>-C<sub>12</sub>)alkoxy, aryloxy, aryloxy(C<sub>1</sub>-C<sub>12</sub>)alkyl, aryloxy(C<sub>1</sub>-C<sub>12</sub>)alkoxy, mono- or di(C<sub>1</sub>-C<sub>12</sub>)alkylaryl(C<sub>1</sub>-C<sub>12</sub>)alkyl, mono- or di-(C<sub>1</sub>-C<sub>12</sub>)alkoxyaryl(C<sub>1</sub>-C<sub>12</sub>)alkyl, mono- or di-(C<sub>1</sub>-C<sub>12</sub>)alkylaryl(C<sub>1</sub>-C<sub>12</sub>)alkoxy, mono- or di-(C<sub>1</sub>-C<sub>12</sub>)alkoxyaryl(C<sub>1</sub>-C<sub>12</sub>)alkoxy, amino, mono- or di-(C<sub>1</sub>-C<sub>12</sub>)alkylamino, diarylamino, piperazino, <i>N</i>-(C<sub>1</sub>-C<sub>12</sub>)alkylpiperazino, <i>N</i>-arylpiperazino, aziridino, indolino, piperidino, morpholino, thiomorpholino, tetrahydroquinolino, tetrahydroisoquinolino, pyrrolidyl, C<sub>1</sub>-C<sub>12</sub> alkyl, C<sub>1</sub>-C<sub>12</sub> haloalkyl, C<sub>1</sub>-C<sub>12</sub> alkoxy, mono(C<sub>1</sub>-C<sub>12</sub>)alkoxy(C<sub>1</sub>-C<sub>12</sub> )alkyl, acryloxy, methacryloxy, or halogen; an unsubstituted or mono-substituted group chosen from pyrazolyl, imidazolyl, pyrazolinyl, imidazolinyl, pyrrolinyl, phenothiazinyl, phenoxazinyl, phenazinyl, and acridinyl, each of said substituents being C<sub>1</sub>-C<sub>12</sub> alkyl,<!-- EPO <DP n="82"> --> C<sub>1</sub>-C<sub>12</sub> alkoxy, phenyl, or halogen; a mono-substituted phenyl, said phenyl having a substituent located at the para position, wherein the substituent is: a dicarboxylic acid residue or derivative thereof, a diamine residue or derivative thereof, an amino alcohol residue or derivative thereof, a polyol residue or derivative thereof, -CH<sub>2</sub>-, -(CH<sub>2</sub>)<sub>t</sub>, or -[O-(CH<sub>2</sub>)<sub>t</sub>]<sub>k</sub>-, wherein t is an integer 2, 3, 4, 5 or 6 and k is an integer from 1 to 50, the substituent being connected to an aryl group on another photochromic material; a group represented by one of:
<chemistry id="chem0033" num="0033"><img id="ib0033" file="imgb0033.tif" wi="119" he="26" img-content="chem" img-format="tif"/></chemistry>
wherein K is -CH<sub>2</sub>- or -O-, and M is -O- or substituted nitrogen, provided that when M is substituted nitrogen, K is -CH<sub>2</sub>-, the substituted nitrogen substituents being hydrogen, C<sub>1</sub>-C<sub>12</sub> alkyl, or C<sub>1</sub>-C<sub>12</sub> acyl, each R<sub>25</sub> being independently chosen for each occurrence from C<sub>1</sub>-C<sub>12</sub> alkyl, C<sub>1</sub>-C<sub>12</sub> alkoxy, hydroxy, and halogen, R<sub>26</sub> and R<sub>27</sub> each being independently hydrogen or C<sub>1</sub>-C<sub>12</sub> alkyl, and u is an integer ranging from 0 to 2; or a group represented by:
<chemistry id="chem0034" num="0034"><img id="ib0034" file="imgb0034.tif" wi="70" he="19" img-content="chem" img-format="tif"/></chemistry>
wherein R<sub>28</sub> is hydrogen or C<sub>1</sub>-C<sub>12</sub> alkyl, and R<sub>29</sub> is an unsubstituted, mono-, or di-substituted group chosen from naphthyl, phenyl, furanyl, and thienyl, wherein the substituents are C<sub>1</sub>-C<sub>12</sub> alkyl, C<sub>1</sub>-C<sub>12</sub> alkoxy, or halogen; or<br/>
B and B' taken together form one of a fluoren-9-ylidene, mono-, or di-substituted fluoren-9-ylidene, each of said fluoren-9-ylidene substituents being independently chosen from C<sub>1</sub>-C<sub>12</sub> alkyl, C<sub>1</sub>-C<sub>12</sub> alkoxy, and halogen;</claim-text>
provided that the photochromic material comprises at least one reactive substituent R.</claim-text></claim>
<claim id="c-en-01-0002" num="0002">
<claim-text>The ophthalmic device of claim 1, wherein the photochromic material is represented by:<!-- EPO <DP n="83"> -->
<chemistry id="chem0035" num="0035"><img id="ib0035" file="imgb0035.tif" wi="107" he="66" img-content="chem" img-format="tif"/></chemistry></claim-text></claim>
<claim id="c-en-01-0003" num="0003">
<claim-text>The ophthalmic device of claim 1 or claim 2, wherein the photochromic material comprises two reactive substituents R.</claim-text></claim>
<claim id="c-en-01-0004" num="0004">
<claim-text>The ophthalmic device of claim 1 or claim 2, wherein R<sub>3</sub> comprises a substituent at the 6 and 7 position on structure III or structure IV, said substituent at the 6 and 7 position each being independently the reactive substituent R; -OR<sub>10</sub>, wherein R<sub>10</sub> is hydrogen; C<sub>1</sub>-C<sub>6</sub> alkyl; or a nitrogen-containing group, wherein said nitrogen-containing group is:
<claim-text>(i) -N(R<sub>11</sub>)R<sub>12</sub> wherein R<sub>11</sub> and R<sub>12</sub> are each independently hydrogen, C<sub>1</sub>-C<sub>8</sub> alkyl, phenyl, or C<sub>1</sub>- C<sub>20</sub> alkoxyalkyl, or</claim-text>
<claim-text>(ii) a nitrogen containing ring represented by the following graphic formula VA:
<chemistry id="chem0036" num="0036"><img id="ib0036" file="imgb0036.tif" wi="83" he="34" img-content="chem" img-format="tif"/></chemistry>
wherein each Y is independently chosen for each occurrence from -CH<sub>2</sub>-, -CH(R<sub>13</sub>)-, -C(R<sub>13</sub>)<sub>2</sub>-, -CH(aryl)-, -C(aryl)<sub>2</sub>-, and -C(R<sub>13</sub>)(aryl)-, and Z is -Y-, -O-, -S-, -S(O)-, -SO<sub>2</sub>-, -NH-, -N(R<sub>13</sub>)-, or -N(aryl)-, wherein each R<sub>13</sub> is independently C<sub>1</sub>-C<sub>6</sub> alkyl, each aryl is independently phenyl or naphthyl, m is the integer 1, 2 or 3, and p is the integer 0, 1, 2, or 3 and when p is 0, Z is Y.</claim-text></claim-text></claim>
<claim id="c-en-01-0005" num="0005">
<claim-text>The ophthalmic device of claim 1 or claim 2, wherein R<sub>5</sub> and R<sub>6</sub> are each independently the reactive substituent R; C<sub>1</sub>-C<sub>6</sub> alkyl; hydroxy; or -OR<sub>18</sub>, wherein R<sub>18</sub> is C<sub>1</sub>-C<sub>6</sub> alkyl.<!-- EPO <DP n="84"> --></claim-text></claim>
<claim id="c-en-01-0006" num="0006">
<claim-text>The ophthalmic device of claim 1 or claim 2 wherein said device is formed from at least one polymeric material comprising said photochromic material incorporated into at least a portion thereof, wherein the polymeric material is optionally formed from components comprising hydrophilic monomers, hydrophilic polymers and silicone components.</claim-text></claim>
<claim id="c-en-01-0007" num="0007">
<claim-text>The ophthalmic device of claim 6, wherein said ophthalmic device is a contact lens and said polymeric material comprises a hydrogel.</claim-text></claim>
<claim id="c-en-01-0008" num="0008">
<claim-text>The ophthalmic device of claim 1 or claim 2 wherein the photochromic material is connected to at least a portion of the ophthalmic device, wherein, optionally, the ophthalmic device is selected from the group consisting of soft contact lenses, hard contact lenses, intraocular lenses, overlay lenses, ocular inserts, and optical inserts.</claim-text></claim>
<claim id="c-en-01-0009" num="0009">
<claim-text>The ophthalmic device of claim 1 or claim 2, wherein the ophthalmic device is a soft contact lens.</claim-text></claim>
<claim id="c-en-01-0010" num="0010">
<claim-text>The ophthalmic device of claim 8, wherein the ophthalmic device comprises a polymeric material and the photochromic material is at least one of blended with at least a portion of the polymeric material and bonded to at least a portion of the polymeric material, wherein the photochromic material is optionally bonded by co-polymerization with at least a portion of the polymeric material and, optionally, wherein an at least partial coating of a polymeric coating material is connected to at least a portion of a surface of the ophthalmic device and the polymeric coating material comprises the photochromic material.</claim-text></claim>
<claim id="c-en-01-0011" num="0011">
<claim-text>A method of making a photochromic ophthalmic device of claim 1 or claim 2 comprising connecting the photochromic material to at least a portion of the ophthalmic device.</claim-text></claim>
<claim id="c-en-01-0012" num="0012">
<claim-text>The method according to claim 11, wherein the substrate comprises a polymeric material, and connecting comprises incorporating the photochromic material into at least a portion of the ophthalmic device by at least one of blending the photochromic material with at least a portion of the polymeric material and bonding the photochromic material to at least a portion of the polymeric material, wherein, optionally, the photochromic<!-- EPO <DP n="85"> --> material is bonded by co-polymerizing the photochromic material with at least a portion of the polymeric material.</claim-text></claim>
<claim id="c-en-01-0013" num="0013">
<claim-text>The method according to claim 11, wherein the ophthalmic device comprises a polymeric material and connecting the photochromic material to at least a portion of said ophthalmic device comprises casting-in-place the photochromic material and the polymeric material, or applying an at least partial coating comprising the photochromic material to at least a portion of the ophthalmic device, wherein applying the at least partial coating comprising the photochromic material to at least a portion of the ophthalmic device optionally comprises one of dip coating, spin coating, roll coating, spray coating, curtain coating, and in-mold casting.</claim-text></claim>
<claim id="c-en-01-0014" num="0014">
<claim-text>The ophthalmic device of claim 6 or claim 8 where the photochromic article comprises at least one of a complementary photochromic material, a photoinitiator, a thermal initiator, a polymerization inhibitor, a solvent, a light stabilizer, a heat stabilizer, a mold release agent, a rheology control agent, a leveling agent, a free radical scavenger, an adhesion promoter, a wetting agent, a compatibilizing component, a medicinal agent, an antimicrobial compound, a reactive tint, a pigment, a copolymerizable and nonpolymerizable dye and mixtures thereof.</claim-text></claim>
<claim id="c-en-01-0015" num="0015">
<claim-text>The ophthalmic device of claim 8 wherein said device is coated with a coating composition comprising the photochromic material.</claim-text></claim>
</claims>
<claims id="claims02" lang="de"><!-- EPO <DP n="86"> --><!-- EPO <DP n="87"> -->
<claim id="c-de-01-0001" num="0001">
<claim-text>Ophthalmische Vorrichtung, umfassend mindestens ein durch:
<chemistry id="chem0037" num="0037"><img id="ib0037" file="imgb0037.tif" wi="102" he="35" img-content="chem" img-format="tif"/></chemistry>
<chemistry id="chem0038" num="0038"><img id="ib0038" file="imgb0038.tif" wi="102" he="41" img-content="chem" img-format="tif"/></chemistry>
wiedergegebenes photochromes Material oder eine Mischung davon, wobei
<claim-text>(a) R<sub>1</sub> für: einen reaktiven Substituenten R steht, der durch eine der folgenden Formeln wiedergegeben wird:
<claim-text>-A-D-E-G-J;</claim-text>
<claim-text>-G-E-G-J;</claim-text>
<claim-text>-D-E-G-J;<!-- EPO <DP n="88"> --></claim-text>
<claim-text>-A-D-J;</claim-text>
<claim-text>-D-G-J; und</claim-text>
<claim-text>-D-J;</claim-text>
wobei<br/>
-A- für -C(=O)-, -OC(=O)-, -NHC(=O)- oder -CH<sub>2</sub>-steht;<br/>
-D- für einen Diaminrest oder ein Derivat davon, wobei es sich bei dem Diaminrest um einen aliphatischen Diaminrest, einen cycloaliphatischen Diaminrest, einen Diazacycloalkanrest, einen azacycloaliphatischen Aminrest, einen Diazakronenetherrest oder einen aromatischen Diaminrest handelt, wobei ein erster Amin-Stickstoff des Diaminrests eine Bindung mit -A-, Struktur I, Struktur II, Struktur III oder Struktur IV bildet und ein zweiter Amin-Stickstoff des Diaminrests eine Bindung mit -E-, -G- oder -J bildet; oder einen Aminoalkoholrest oder ein Derivat davon, wobei es sich bei dem Aminoalkoholrest um einen aliphatischen Aminoalkoholrest, einen cycloaliphatischen Aminoalkoholrest, einen azacycloaliphatischen Alkoholrest, einen diazacycloaliphatischen Alkoholrest oder einen aromatischen Aminoalkoholrest handelt, wobei ein Amin-Stickstoff des Aminoalkoholrests eine Bindung mit -A-, Struktur I, Struktur II, Struktur III oder Struktur IV bildet und ein Alkohol-Sauerstoff des Aminoalkoholrests eine Bindung mit -E-, -G- oder -J bildet oder der Amin-Stickstoff des Aminoalkoholrests eine Bindung mit -E-, -G- oder<br/>
-J bildet und der Alkohol-Sauerstoff des Aminoalkoholrests eine Bindung mit -A-, Struktur I, Struktur II, Struktur III oder Struktur IV bildet; steht;<br/>
-E- für einen Dicarbonsäurerest oder ein Derivat davon, wobei es sich bei dem Dicarbonsäurerest um einen aliphatischen Dicarbonsäurerest, einen cycloaliphatischen Dicarbonsäurerest oder einen aromatischen Dicarbonsäurerest handelt, wobei eine<!-- EPO <DP n="89"> --> erste Carbonylgruppe des Dicarbonsäurerests eine Bindung mit -G- oder -D- bildet und eine zweite Carbonylgruppe des Dicarbonsäurerests eine Bindung mit -G- bildet, steht;<br/>
-G- jeweils unabhängig voneinander für -[(OC<sub>2</sub>H<sub>4</sub>)<sub>x</sub>(OC<sub>3</sub>H<sub>6</sub>)<sub>y</sub>(OC<sub>4</sub>H<sub>8</sub>)<sub>2</sub>]-O-, worin x, y und z jeweils unabhängig voneinander für eine Zahl zwischen 0 und 50 stehen und die Summe von x, y und z im Bereich von 1 bis 50 liegt; oder einen Polyolrest oder ein Derivat davon, wobei es sich bei dem Polyolrest um einen aliphatischen Polyolrest, einen cycloaliphatischen Polyolrest oder einen aromatischen Polyolrest handelt, wobei ein erster Polyol-Sauerstoff des Polyolrests eine Bindung mit -E-, -D-, Struktur I, Struktur II, Struktur III oder Struktur IV bildet und ein zweiter Polyol-Sauerstoff des Polyolrests eine Bindung mit -E- oder -J bildet; steht; und<br/>
-J für eine Gruppe, die Acryl, Methacryl, Crotyl, 2-(Methacryloxy)ethylcarbamyl, 2-(Methacryloxy)-ethoxycarbonyl, 4-vinylphenol, Vinyl, 1-Chlorvinyl oder Epoxy umfasst, steht oder -J für Wasserstoff steht, mit der Maßgabe, dass dann, wenn -J für Wasserstoff steht, -J an einen Sauerstoff der Gruppe -D- oder -G- gebunden ist;<br/>
oder R<sub>1</sub> für Wasserstoff; Hydroxyl; C<sub>1</sub>-C<sub>3</sub>-Alkyl; oder die Gruppe -C(=O)W steht, wobei W für OR<sub>7</sub>, -N(R<sub>8</sub>)(R<sub>9</sub>), Piperidino oder Morpholino steht, wobei R<sub>7</sub> für Allyl, C<sub>1</sub>-C<sub>6</sub>-Alkyl, Phenyl, mono-(C<sub>1</sub>-C<sub>6</sub>)-alkylsubstituiertes Phenyl, mono-(C<sub>1</sub>-C<sub>6</sub>)-alkoxy-substituiertes Phenyl, Phenyl-(C<sub>1</sub>-C<sub>3</sub>)-alkyl, mono-(C<sub>1</sub>-C<sub>6</sub>) -alkylsubstituiertes Phenyl- (C<sub>1</sub>-C<sub>3</sub>) -alkyl, mono-(C<sub>1</sub>-C<sub>6</sub>)-alkoxysubstituiertes Phenyl-(C<sub>1</sub>-C<sub>3</sub>)-alkyl, C<sub>1</sub>-C<sub>6</sub>-Alkoxy-(C<sub>2</sub>-C<sub>4</sub>)-alkyl oder C<sub>1</sub>-C<sub>6</sub>-Halogenalkyl steht, R<sub>8</sub> und R<sub>9</sub> jeweils unabhängig voneinander für C<sub>1</sub>-C<sub>6</sub>-Alkyl, C<sub>5</sub>-C<sub>7</sub>-Cycloalkyl, Phenyl, monosubstituiertes Phenyl oder disubstituiertes Phenyl stehen, wobei es sich bei den Phenylsubstituenten um C<sub>1</sub>-C<sub>6</sub>-Alkyl oder C<sub>1</sub>-C<sub>6</sub>-Alkoxy<!-- EPO <DP n="90"> --> handelt und es sich bei dem Halogensubstituenten um Chlor oder Fluor handelt;</claim-text>
<claim-text>(b) R<sub>1</sub>' für: den reaktiven Substituenten R; Wasserstoff; Hydroxy; C<sub>1</sub>-C<sub>3</sub>-Alkyl, oder die Gruppe -C(=O) W steht, wobei W für -OR<sub>7</sub>, -N(R<sub>8</sub>)(R<sub>9</sub>), Piperidino oder Morpholino steht, wobei R<sub>7</sub> für Allyl, C<sub>1</sub>-C<sub>6</sub>-Alkyl, Phenyl, mono-(C<sub>1</sub>-C<sub>6</sub>)-alkylsubstituiertes Phenyl, mono-(C<sub>1</sub>-C<sub>6</sub>)-alkoxysubstituiertes Phenyl, Phenyl-(C<sub>1</sub>-C<sub>3</sub>)-alkyl, mono-(C<sub>1</sub>-C<sub>6</sub>)-alkylsubstituiertes Phenyl-(C<sub>1</sub>-C<sub>3</sub>)-alkyl, mono-(C<sub>1</sub>-C<sub>6</sub>)-alkoxysubstituiertes Phenyl-(C<sub>1</sub>-C<sub>3</sub>)-alkyl, C<sub>1</sub>-C<sub>6</sub>-Alkoxy-(C<sub>2</sub>-C<sub>4</sub>)-alkyl oder C<sub>1</sub>-C<sub>6</sub>-Halogenalkyl steht und R<sub>8</sub> und R<sub>9</sub> jeweils unabhängig voneinander für C<sub>1</sub>-C<sub>6</sub>-Alkyl, C<sub>5</sub>-C<sub>7</sub>-Cycloalkyl, Phenyl, monosubstituiertes Phenyl oder disubstituiertes Phenyl stehen, wobei es sich bei den Phenylsubstituenten um C<sub>1</sub>-C<sub>6</sub>-Alkyl oder C<sub>1</sub>-C<sub>6</sub>-Alkoxy handelt und es sich bei dem Halogensubstituenten um Chlor oder Fluor handelt;</claim-text>
<claim-text>(c) R<sub>2</sub> für: den reaktiven Substituenten R; Wasserstoff; C<sub>1</sub>-C<sub>6</sub>-Alkyl, C<sub>3</sub>-C<sub>7</sub>-Cycloalkyl; substituiertes oder unsubstituiertes Phenyl; oder -OR<sub>10</sub> oder -OC (=O) R<sub>10</sub> steht, wobei R<sub>10</sub> für Wasserstoff, C<sub>1</sub>-C<sub>6</sub>-Alkyl, Phenyl-(C<sub>1</sub>-C<sub>3</sub>)-alkyl, mono-(C<sub>1</sub>-C<sub>6</sub>)-alkylsubstituiertes Phenyl- (C<sub>1</sub>-C<sub>3</sub>) - alkyl, mono-(C<sub>1</sub>-C<sub>6</sub>)-alkoxysubstituiertes Phenyl-(C<sub>1</sub>-C<sub>3</sub>)-alkyl, (C<sub>1</sub>-C<sub>6</sub>)-Alkoxy-(C<sub>2</sub>-C<sub>4</sub>)-alkyl, C<sub>3</sub>-C<sub>7</sub>-Cycloalkyl oder mono-(C<sub>1</sub>-C<sub>4</sub>)-alkylsubstituiertes C<sub>3</sub>-C<sub>7</sub>-Cycloalkyl steht, wobei es sich bei den Phenylsubstituenten um C<sub>1</sub>-C<sub>6</sub>-Alkyl oder C<sub>1</sub>-C<sub>6</sub>-Alkoxy handelt;</claim-text>
<claim-text>(d) n für eine ganze Zahl im Bereich von 0 bis 4 steht, wobei R<sub>3</sub> und R<sub>4</sub> unabhängig voneinander für jedes Auftreten für: den reaktiven Substituenten R; Wasserstoff; Fluor; Chlor; C<sub>1</sub>-C<sub>6</sub>-Alkyl; C<sub>3</sub>-C<sub>7</sub>-Cycloalkyl; substituiertes oder unsubstituiertes Phenyl; -OR<sub>10</sub>; oder -OC (=O) R<sub>10</sub>, wobei R<sub>10</sub> für Wasserstoff, C<sub>1</sub>-C<sub>6</sub>-Alkyl, Phenyl-(C<sub>1</sub>-C<sub>3</sub>)-alkyl, mono-(C<sub>1</sub>-C<sub>6</sub>)-alkylsubstituiertes Phenyl-(C<sub>1</sub>-C<sub>3</sub>)-<!-- EPO <DP n="91"> --> alkyl, mono-(C<sub>1</sub>-C<sub>6</sub>)-alkoxysubstituiertes Phenyl-(C<sub>1</sub>-C<sub>3</sub>)-alkyl, (C<sub>1</sub>-C<sub>6</sub>)-Alkoxy-(C<sub>2</sub>-C<sub>4</sub>)-alkyl, C<sub>3</sub>-C<sub>7</sub>-Cycloalkyl oder mono-(C<sub>1</sub>-C<sub>4</sub>)-alkylsubstituiertes C<sub>3</sub>-C<sub>7</sub>-Cycloalkyl steht und es sich bei den Phenylsubstituenten um C<sub>1</sub>-C<sub>6</sub>-Alkyl oder C<sub>1</sub>-C<sub>6</sub>-Alkoxy handelt; ein monosubstituiertes Phenyl, wobei das Phenyl einen in der para-Position stehenden Substituenten aufweist, wobei es sich bei dem Substituenten um: einen Dicarbonsäurerest oder ein Derivat davon, einen Diaminrest oder ein Derivat davon, einen Aminoalkoholrest oder ein Derivat davon, einen Polyolrest oder ein Derivat davon, -CH<sub>2</sub>-, -(CH<sub>2</sub>)<sub>t</sub>- oder -[O-(CH<sub>2</sub>)<sub>t</sub>]<sub>k</sub>- handelt, wobei t für die ganze Zahl 2, 3, 4, 5 oder 6 steht und k für eine ganze Zahl von 1 bis 50 steht, wobei der Substituent mit einer Arylgruppe an einem anderen photochromen Material verbunden ist; -N(R<sub>11</sub>)R<sub>12</sub>, worin R<sub>11</sub> und R<sub>12</sub> jeweils unabhängig voneinander für Wasserstoff, C<sub>1</sub>-C<sub>8</sub>-Alkyl, Phenyl, Naphthyl, Furanyl, Benzofuran-2-yl, Benzofuran-3-yl, Thienyl, Benzothien-2-yl, Benzothien-3-yl, Dibenzofuranyl, Dibenzothienyl, Benzopyridyl, Fluorenyl, C<sub>1</sub>-C<sub>8</sub>-Alkylaryl, C<sub>3</sub>-C<sub>20</sub>-cycloalkyl, C<sub>4</sub>-C<sub>20</sub>-Bicycloalkyl, C<sub>5</sub>-C<sub>20</sub>-Tricycloalkyl oder C<sub>1</sub>-C<sub>20</sub>-Alkoxyalkyl, wobei es sich bei der Arylgruppe um Phenyl oder Naphthyl handelt, stehen oder R<sub>11</sub> und R<sub>12</sub> gemeinsam mit dem Stickstoffatom einen C<sub>3</sub>-C<sub>20</sub>-Heterobicycloalkylring oder einen C<sub>4</sub>-C<sub>20</sub>-Heterotricycloalkylring bildern; einen stickstoffhaltigen Ring, der durch die folgende graphische Formel VA wiedergegeben wird:
<chemistry id="chem0039" num="0039"><img id="ib0039" file="imgb0039.tif" wi="56" he="20" img-content="chem" img-format="tif"/></chemistry>
worin Y jeweils unabhängig voneinander für jedes Auftreten aus -CH<sub>2</sub>-, -CH(R<sub>13</sub>)-, -C(R<sub>13</sub>)<sub>2</sub>-, -CH(Aryl)-, -C(Aryl)<sub>2</sub>- und -C(R<sub>13</sub>) (Aryl) -<!-- EPO <DP n="92"> --> ausgewählt ist und Z für -Y-, -O-, -S-, -S(O)-, -SO<sub>2</sub>-, -NH-, -N(R<sub>13</sub>)- oder -N(Aryl)- steht, wobei R<sub>13</sub> jeweils unabhängig voneinander für C<sub>1</sub>-C<sub>6</sub>-Alkyl steht, jedes Aryl unabhängig voneinander Phenyl oder Naphthyl ist, m für eine ganze Zahl mit einem Wert von 1, 2 oder 3 steht und p für eine ganze Zahl mit einem Wert von 0, 1, 2 oder 3 steht und dann, wenn p gleich 0 ist, Z für Y steht; eine Gruppe, die durch eine der folgenden graphischen Formeln VB oder VC wiedergegeben wird:
<chemistry id="chem0040" num="0040"><img id="ib0040" file="imgb0040.tif" wi="96" he="24" img-content="chem" img-format="tif"/></chemistry>
worin R<sub>15</sub>, R<sub>16</sub> und R<sub>17</sub> jeweils unabhängig voneinander für Wasserstoff, C<sub>1</sub>-C<sub>6</sub>-Alkyl, Phenyl oder Naphthyl stehen oder die Gruppen R<sub>15</sub> und R<sub>16</sub> zusammen einen Ring aus 5 bis 8 Kohlenstoffatomen bilden und R<sub>14</sub> jeweils unabhängig voneinander für jedes Auftreten für C<sub>1</sub>-C<sub>6</sub>-Alkyl, C<sub>1</sub>-C<sub>6</sub>-Alkoxy, Fluor oder Chlor steht und p für eine ganze Zahl mit einem Wert von 0, 1, 2 oder 3 steht; und unsubstituiertes, mono- oder disubstituiertes spirobicyclisches C<sub>4</sub>-C<sub>18</sub>-Amin oder unsubstituiertes, mono- und disubstituiertes spirotricyclisches C<sub>4</sub>-C<sub>18</sub>-Amin, wobei die Substituenten unabhängig voneinander Aryl, C<sub>1</sub>-C<sub>6</sub>-Alkyl, C<sub>1</sub>-C<sub>6</sub>-Alkoxy oder Phenyl-(C<sub>1</sub>-C<sub>6</sub>)-alkyl sind; stehen; oder<br/>
eine R<sub>3</sub>-Gruppe in der 6-Position und eine R<sub>3</sub>-Gruppe in der 7-Position zusammen eine Gruppe bilden, die durch eine der Formeln VD und VE wiedergegeben wird:
<chemistry id="chem0041" num="0041"><img id="ib0041" file="imgb0041.tif" wi="85" he="22" img-content="chem" img-format="tif"/></chemistry><!-- EPO <DP n="93"> -->
worin T und T' jeweils unabhängig voneinander für Sauerstoff oder die Gruppe -NR<sub>11</sub>- stehen, wobei R<sub>11</sub>, R<sub>15</sub> und R<sub>16</sub> die oben angegebene Bedeutung besitzen;</claim-text>
<claim-text>(e) R<sub>5</sub> und R<sub>6</sub> unabhängig voneinander für jedes Auftreten für: den reaktiven Substituenten R; Wasserstoff; Hydroxy; C<sub>1</sub>-C<sub>6</sub>-Alkyl; C<sub>3</sub>-C<sub>7</sub>-Cycloalkyl Allyl-; substituiertes oder unsubstituiertes Phenyl; substituiertes oder unsubstituiertes Benzyl; Chlor; Fluor; die Gruppe -C(=O)W' worin W' für Wasserstoff, Hydroxy, C<sub>1</sub>-C<sub>6</sub>-Alkyl, C<sub>1</sub>-C<sub>6</sub>-Alkoxy, die unsubstituierten, mono- oder disubstituierten Arylgruppen Phenyl oder Naphthyl, Phenoxy, mono- oder di-(C<sub>1</sub>-C<sub>6</sub>)-alkoxysubstituiertes Phenoxy, mono- oder di-(C<sub>1</sub>-C<sub>6</sub>)-alkoxysubstituiertes Phenoxy, Amino, Mono-(C<sub>1</sub>-C<sub>6</sub>)-alkylamino, Di-(C<sub>1</sub>-C<sub>6</sub>)-alkylamino, Phenylamino, mono- oder di-(C<sub>1</sub>-C<sub>6</sub>)-alkylsubstituiertes Phenylamino oder mono- oder di-(C<sub>1</sub>-C<sub>6</sub>)-alkoxysubstituiertes Phenylamino steht; -OR<sub>18</sub>, worin R<sub>18</sub> für C<sub>1</sub>-C<sub>6</sub>-Alkyl, Phenyl-(C<sub>1</sub>-C<sub>3</sub>) - alkyl, mono-(C<sub>1</sub>-C<sub>6</sub>)-alkylsubstituiertes Phenyl-(C<sub>1</sub>-C<sub>3</sub>)-alkyl, mono-(C<sub>1</sub>-C<sub>6</sub>)-alkoxysubstituiertes Phenyl-(C<sub>1</sub>-C<sub>3</sub>)-alkyl, (C<sub>1</sub>-C<sub>6</sub>)-Alkoxy-(C<sub>2</sub>-C<sub>4</sub>)-alkyl, C<sub>3</sub>-C<sub>7</sub>-Cycloalkyl, mono-(C<sub>1</sub>-C<sub>4</sub>)-alkylsubstituiertes C<sub>3</sub>-C<sub>7</sub>-Cycloalkyl, C<sub>1</sub>-C<sub>6</sub>-Chloralkyl, C<sub>1</sub>-C<sub>6</sub>-Fluoralkyl, Allyl oder die Gruppe -CH(R<sub>19</sub>)Y' steht, wobei R<sub>19</sub> für Wasserstoff oder C<sub>1</sub>-C<sub>3</sub>-Alkyl steht und Y' für CN, CF<sub>3</sub> oder COOR<sub>20</sub> steht, wobei R<sub>20</sub> für Wasserstoff oder C<sub>1</sub>-C<sub>3</sub>-Alkyl steht, oder R<sub>10</sub> für die Gruppe -C(=O)W" steht, wobei W" für Wasserstoff, C<sub>1</sub>-C<sub>6</sub>-Alkyl, C<sub>1</sub>-C<sub>6</sub>-Alkoxy, die unsubstituierten, mono- oder disubstituierten Arylgruppen Phenyl oder Naphthyl, Phenoxy, mono- oder di-(C<sub>1</sub>-C<sub>6</sub>)-alkylsubstituiertes Phenoxy, mono- oder di-(C<sub>1</sub>-C<sub>6</sub>)-alkoxysubstituiertes Phenoxy, Amino, Mono-(C<sub>1</sub>-C<sub>6</sub>)-alkylamino, Di-(C<sub>1</sub>-C<sub>6</sub>)-alkylamino, Phenylamino, mono- oder di- (C<sub>1</sub>-C<sub>6</sub>) -alkylsubstituiertes Phenylamino oder mono- oder di-(C<sub>1</sub>-C<sub>6</sub>)-alkoxysubstituiertes Phenylamino steht; wobei es sich bei jedem der Phenyl-, Benzyl- oder Arylgruppensubstituenten<!-- EPO <DP n="94"> --> unabhängig voneinander um C<sub>1</sub>-C<sub>6</sub>-Alkyl oder C<sub>1</sub>-C<sub>6</sub>-Alkoxy handelt; oder ein monosubstituiertes Phenyl, wobei das Phenyl einen in der para-Position stehenden Substituenten aufweist, wobei es sich bei dem Substituenten um: einen Dicarbonsäurerest oder ein Derivat davon, einen Diaminrest oder ein Derivat davon, einen Aminoalkoholrest oder ein Derivat davon, einen Polyolrest oder ein Derivat davon, -CH<sub>2</sub>-, -(CH<sub>2</sub>)<sub>t</sub>- oder -[O-(CH<sub>2</sub>)<sub>t</sub>]<sub>k</sub>- handelt, wobei t für die ganze Zahl 2, 3, 4, 5 oder 6 steht und k für eine ganze Zahl von 1 bis 50 steht, wobei der Substituent mit einer Arylgruppe an einem anderen photochromen Material verbunden ist; stehen; oder R<sub>5</sub> und R<sub>6</sub> zusammen eine Oxogruppe, eine spirocarbocyclische Gruppe mit 3 bis 6 Kohlenstoffatomen oder eine spiroheterocyclische Gruppe mit 1 bis 2 Sauerstoffatomen und 3 bis 6 Kohlenstoffatomen einschließlich des Spirokohlenstoffatoms bilden, wobei die spirocarbocyclischen und spiroheterocyclischen Gruppen mit 0, 1 oder 2 Benzolringen anelliert sind; und</claim-text>
<claim-text>(f) B und B' jeweils unabhängig voneinander für ein substituiertes Phenyl; ein substituiertes Aryl; ein substituiertes 9-Julolidinyl; eine substituierte heteroaromatische Gruppe, die aus Pyridyl, Furanyl, Benzofuran-2-yl, Benzofuran-3-yl, Thienyl, Benzothien-2-yl, Benzothien-3-yl, Dibenzofuranyl, Dibenzothienyl, Carbazoyl, Benzopyridyl, Indolinyl und Fluorenyl ausgewählt ist, wobei es sich bei dem Phenyl-, Aryl-, 9-Julolidinyl- oder heteroaromatischen Substituenten um den reaktiven Substituenten R handelt; eine unsubstituierte, mono-, di- oder trisubstituierte Phenyl- oder Arylgruppe; 9-Julolidinyl; oder eine unsubstituierte, mono- oder disubstituierte heteroaromatische Gruppe, die aus Pyridyl, Furanyl, Benzofuran-2-yl, Benzofuran-3-yl, Thienyl, Benzothien-2-yl, Benzothien-3-yl,<!-- EPO <DP n="95"> --> Dibenzofuranyl, Dibenzothienyl, Carbazoyl, benzopyridyl, Indolinyl und Fluorenyl ausgewählt ist, wobei jeder der Phenyl-, Aryl- und heteroaromatischen Substituenten jeweils unabhängig voneinander für: Hydroxyl, eine Gruppe -C(=O)R<sub>21</sub>, worin R<sub>21</sub> für -OR<sub>22</sub>, -N (R<sub>23</sub>) R<sub>24</sub>, Piperidino, Morpholino steht, wobei R<sub>22</sub> für Allyl, C<sub>1</sub>-C<sub>6</sub>-Alkyl, Phenyl, mono-(C<sub>1</sub>-C<sub>6</sub>)-alkylsubstituiertes Phenyl, mono-(C<sub>1</sub>-C<sub>6</sub>)-alkoxysubstituiertes Phenyl, Phenyl-(C<sub>1</sub>-C<sub>3</sub>)-alkyl, mono-(C<sub>1</sub>-C<sub>6</sub>)-alkylsubstituiertes Phenyl-(C<sub>1</sub>-C<sub>3</sub>)-alkyl, mono-(C<sub>1</sub>-C<sub>6</sub>)-alkoxysubstituiertes Phenyl-(C<sub>1</sub>-C<sub>3</sub>)-alkyl, C<sub>1</sub>-C<sub>6</sub>-Alkoxy-(C<sub>2</sub>-C<sub>4</sub>)-alkyl oder C<sub>1</sub>-C<sub>6</sub>-Halogenalkyl steht, R<sub>23</sub> und R<sub>24</sub> jeweils unabhängig voneinander für C<sub>1</sub>-C<sub>6</sub>-Alkyl, C<sub>5</sub>-C<sub>7</sub>-Cycloalkyl, Phenyl oder substituiertes Phenyl, wobei es sich bei den Phenylsubstituenten um C<sub>1</sub>-C<sub>6</sub>-Alkyl oder C<sub>1</sub>-C<sub>6</sub>-Alkoxy handelt und es es sich bei dem Halogensubstituenten um Chlor oder Fluor handelt, Aryl, Mono-(C<sub>1</sub>-C<sub>12</sub>)-alkoxyaryl, Di-(C<sub>1</sub>-C<sub>12</sub>)-alkoxyaryl, Mono-(C<sub>1</sub>-C<sub>12</sub>)-alkylaryl, Di-(C<sub>1</sub>-C<sub>12</sub>)-alkylaryl, Halogenaryl, C<sub>3</sub>-C<sub>7</sub>-Cycloalkylaryl, C<sub>3</sub>-C<sub>7</sub>-cycloalkyl, C<sub>3</sub>-C<sub>7</sub>-Cycloalkyloxy, C<sub>3</sub>-C<sub>7</sub>-cycloalkyloxy-(C<sub>1</sub>-C<sub>12</sub>)-alkyl, C<sub>3</sub>-C<sub>7</sub>-cycloalkyloxy-(C<sub>1</sub>-C<sub>12</sub>)-alkoxy, Aryl-(C<sub>1</sub>-C<sub>12</sub>)-alkyl, Aryl-(C<sub>1</sub>-C<sub>12</sub>)-alkoxy, Aryloxy, Aryloxy-(C<sub>1</sub>-C<sub>12</sub>)-alkyl, Aryloxy-(C<sub>1</sub>-C<sub>12</sub>)-alkoxy, Mono- oder Di-(C<sub>1</sub>-C<sub>12</sub>)-alkylaryl-(C<sub>1</sub>-C<sub>12</sub>)-alkyl, Mono- oder Di-(C<sub>1</sub>-C<sub>12</sub>)-alkoxyaryl-(C<sub>1</sub>-C<sub>12</sub>)-alkyl, Mono- oder Di-(C<sub>1</sub>-C<sub>12</sub>)-alkylaryl-(C<sub>1</sub>-C<sub>12</sub>)-alkoxy, Mono- oder Di-(C<sub>1</sub>-C<sub>12</sub>)-alkoxyaryl-(C<sub>1</sub>-C<sub>12</sub>)-alkoxy, Amino, Mono- oder Di-(C<sub>1</sub>-C<sub>12</sub>)-alkylamino, Diarylamino, Piperazino, <i>N</i>-(C<sub>1</sub>-C<sub>12</sub>)-Alkylpiperazino, <i>N</i>-Arylpiperazino, Aziridino, Indolino, Piperidino, Morpholino, Thiomorpholino, Tetrahydrochinolino, Tetrahydroisochinolino, Pyrrolidyl, C<sub>1</sub>-C<sub>12</sub>-Alkyl, C<sub>1</sub>-C<sub>12</sub>-Halogenalkyl, C<sub>1</sub>-C<sub>12</sub>-Alkoxy, Mono-(C<sub>1</sub>-C<sub>12</sub>) -alkoxy-(C<sub>1</sub>-C<sub>12</sub>)-alkyl, Acryloxy, Methacryloxy oder Halogen stehen, steht; eine unsubstituierte oder monosubstituierte Gruppe, die aus Pyrazolyl, Imidazolyl,<!-- EPO <DP n="96"> --> Pyrazolinyl, Imidazolinyl, Pyrrolinyl, Phenothiazinyl, Phenoxazinyl, Phenazinyl und Acridinyl ausgewählt ist, wobei es sich bei jedem der Substituenten um C<sub>1</sub>-C<sub>12</sub>-Alkyl, C<sub>1</sub>-C<sub>12</sub>-Alkoxy, Phenyl oder Halogen handelt; ein monosubstituiertes Phenyl, wobei das Phenyl einen in der para-Position stehenden Substituenten aufweist, wobei es sich bei dem Substituenten um: einen Dicarbonsäurerest oder ein Derivat davon, einen Diaminrest oder ein Derivat davon, einen Aminoalkoholrest oder ein Derivat davon, einen Polyolrest oder ein Derivat davon, -CH<sub>2</sub>-, -(CH<sub>2</sub>)<sub>t</sub>- oder -[O-(CH<sub>2</sub>)<sub>t</sub>]<sub>k</sub>- handelt, wobei t für die ganze Zahl 2, 3, 4, 5 oder 6 steht und k für eine ganze Zahl von 1 bis 50 steht, wobei der Substituent mit einer Arylgruppe an einem anderen photochromen Material verbunden ist; eine Gruppe, die durch eine der folgenden Formeln wiedergegeben wird:
<chemistry id="chem0042" num="0042"><img id="ib0042" file="imgb0042.tif" wi="74" he="16" img-content="chem" img-format="tif"/></chemistry>
worin K für -CH<sub>2</sub>- oder -O- steht und M für -O- oder substituierten Stickstoff steht, mit der Maßgabe, dass dann, wenn M für substituierten Stickstoff steht, K für -CH<sub>2</sub>- steht, wobei es sich bei den Substituenten des substituierten Stickstoffs um Wasserstoff, C<sub>1</sub>-C<sub>12</sub>-Alkyl oder C<sub>1</sub>-C<sub>12</sub>-Acyl handelt, wobei R<sub>25</sub> jeweils unabhängig voneinander für jedes Auftreten aus C<sub>1</sub>-C<sub>12</sub>-Alkyl, C<sub>1</sub>-C<sub>12</sub>-Alkoxy, Hydroxy und Halogen ausgewählt ist, R<sub>26</sub> und R<sub>27</sub> jeweils unabhängig voneinander für Wasserstoff oder C<sub>1</sub>-C<sub>12</sub>-Alkyl stehen und u für eine ganze Zahl im Bereich von 0 bis 2 steht; oder eine durch:
<chemistry id="chem0043" num="0043"><img id="ib0043" file="imgb0043.tif" wi="43" he="12" img-content="chem" img-format="tif"/></chemistry>
wiedergegebene Gruppe, worin R<sub>28</sub> für Wasserstoff oder C<sub>1</sub>-C<sub>12</sub>-Alkyl steht und R<sub>29</sub> für eine unsubstituierte,<!-- EPO <DP n="97"> --> mono- oder disubstituierte Gruppe, die aus Naphthyl, Phenyl, Furanyl und Thienyl ausgewählt ist, steht, wobei es sich bei den Substituenten um C<sub>1</sub>-C<sub>12</sub>-Alkyl, C<sub>1</sub>-C<sub>12</sub>-Alkoxy oder Halogen handelt; stehen; oder<br/>
B und B' gemeinsam ein Fluoren-9-yliden oder ein mono- oder disubstituiertes Fluoren-9-yliden bilden, wobei jeder der Fluoren-9-yliden-Substituenten unabhängig voneinander aus C<sub>1</sub>-C<sub>12</sub>-Alkyl, C<sub>1</sub>-C<sub>12</sub>-Alkoxy und Halogen ausgewählt ist;<br/>
mit der Maßgabe, dass das photochrome Material mindestens einen reaktiven Substituenten R umfasst.</claim-text></claim-text></claim>
<claim id="c-de-01-0002" num="0002">
<claim-text>Ophthalmische Vorrichtung nach Anspruch 1, wobei das photochrome Material durch:
<chemistry id="chem0044" num="0044"><img id="ib0044" file="imgb0044.tif" wi="65" he="35" img-content="chem" img-format="tif"/></chemistry>
wiedergegeben wird.</claim-text></claim>
<claim id="c-de-01-0003" num="0003">
<claim-text>Ophthalmische Vorrichtung nach Anspruch 1 oder Anspruch 2, wobei das photochrome Material zwei reaktive Substituenten R umfasst.</claim-text></claim>
<claim id="c-de-01-0004" num="0004">
<claim-text>Ophthalmische Vorrichtung nach Anspruch 1 oder Anspruch 2, wobei R<sub>3</sub> einen Substituenten in der 6- und 7-Position an Struktur III oder Struktur IV umfasst, wobei es sich bei dem Substituenten in der 6- und 7-Position jeweils unabhängig voneinander um den reaktiven Substituenten R; -OR<sub>10</sub>, worin R<sub>10</sub> für Wasserstoff steht; C<sub>1</sub>-C<sub>6</sub>-Alkyl;<!-- EPO <DP n="98"> --> oder eine stickstoffhaltige Gruppe handelt, wobei es sich bei der stickstoffhaltigen Gruppe um:
<claim-text>(i) -N(R<sub>11</sub>)R<sub>12</sub>, worin R<sub>11</sub> und R<sub>12</sub> jeweils unabhängig voneinander für Wasserstoff, C<sub>1</sub>-C<sub>8</sub>-Alkyl, Phenyl oder C<sub>1</sub>-C<sub>20</sub>-Alkoxyalkyl stehen, oder</claim-text>
<claim-text>(ii) einen stickstoffhaltigen Ring, der durch die folgende graphische Formel VA wiedergegeben wird:
<chemistry id="chem0045" num="0045"><img id="ib0045" file="imgb0045.tif" wi="52" he="22" img-content="chem" img-format="tif"/></chemistry>
worin Y jeweils unabhängig voneinander für jedes Auftreten aus -CH<sub>2</sub>-, -CH(R<sub>13</sub>)-, -C(R<sub>13</sub>)<sub>2</sub>-, -CH(Aryl)-, -C(Aryl)<sub>2</sub>- und -C(R<sub>13</sub>) (Aryl)- ausgewählt ist und Z für -Y-, -O-, -S-, -S(O)-, -SO<sub>2</sub>-, -NH-, -N (R<sub>13</sub>) - oder -N(Aryl)- steht, wobei R<sub>13</sub> jeweils unabhängig voneinander für C<sub>1</sub>-C<sub>6</sub>-Alkyl steht, jedes Aryl unabhängig voneinander Phenyl oder Naphthyl ist, m für eine ganze Zahl mit einem Wert von 1, 2 oder 3 steht und p für eine ganze Zahl mit einem Wert von 0, 1, 2 oder 3 steht und dann, wenn p gleich 0 ist, Z für Y steht,</claim-text>
handelt.</claim-text></claim>
<claim id="c-de-01-0005" num="0005">
<claim-text>Ophthalmische Vorrichtung nach Anspruch 1 oder Anspruch 2, wobei R<sub>5</sub> und R<sub>6</sub> jeweils unabhängig voneinander für den reaktiven Substituenten R; C<sub>1</sub>-C<sub>6</sub>-Alkyl; Hydroxy; oder -OR<sub>18</sub>, worin R<sub>18</sub> für C<sub>1</sub>-C<sub>6</sub>-Alkyl steht; stehen.</claim-text></claim>
<claim id="c-de-01-0006" num="0006">
<claim-text>Ophthalmische Vorrichtung nach Anspruch 1 oder Anspruch 2, wobei die Vorrichtung aus mindestens einem polymeren Material, das das photochrome Material in mindestens einen Teil davon eingearbeitet umfasst, gebildet ist, wobei das polymere Material gegebenenfalls aus Komponenten, die hydrophile Monomere, hydrophile Polymere und Silikonkomponenten umfassen, gebildet ist.<!-- EPO <DP n="99"> --></claim-text></claim>
<claim id="c-de-01-0007" num="0007">
<claim-text>Ophthalmische Vorrichtung nach Anspruch 6, wobei es sich bei der ophthalmischen Vorrichtung um eine Kontaktlinse handelt und das polymere Material ein Hydrogel umfasst.</claim-text></claim>
<claim id="c-de-01-0008" num="0008">
<claim-text>Ophthalmische Vorrichtung nach Anspruch 1 oder Anspruch 2, wobei das photochrome Material mit mindestens einem Teil der ophthalmischen Vorrichtung verbunden ist, wobei die ophthalmische Vorrichtung gegebenenfalls aus der Gruppe bestehend aus weichen Kontaktlinsen, harten Kontaktlinsen, Intraokularlinsen, Auflagelinsen, Augeneinsätzen und optischen Einsätzen ausgewählt ist.</claim-text></claim>
<claim id="c-de-01-0009" num="0009">
<claim-text>Ophthalmische Vorrichtung nach Anspruch 1 oder Anspruch 2, wobei es sich bei der ophthalmischen Vorrichtung um eine weiche Kontaktlinse handelt.</claim-text></claim>
<claim id="c-de-01-0010" num="0010">
<claim-text>Ophthalmische Vorrichtung nach Anspruch 8, wobei die ophthalmische Vorrichung ein polymeres Material umfasst und das photochrome Material mit mindestens einem Teil des polymeren Materials gemischt und/oder an mindestens einen Teil des polymeren Materials gebunden ist, wobei das photochrome Material gegebenenfalls durch Copolymerisation mit mindestens einem Teil des polymeren Materials gebunden ist und gegebenenfalls ein mindestens teilweiser Überzug aus einem polymeren Überzugsmaterial mit mindestens einem Teil der Oberfläche der ophthalmischen Vorrichtung verbunden ist und das polymere Überzugsmaterial das photochrome Material umfasst.</claim-text></claim>
<claim id="c-de-01-0011" num="0011">
<claim-text>Verfahren zur Herstellung einer photochromen ophthalmischen Vorrichtung gemäß Anspruch 1 oder 2, bei dem man das photochrome Material mit mindestens einem Teil der ophthalmischen Vorrichtung verbindet.<!-- EPO <DP n="100"> --></claim-text></claim>
<claim id="c-de-01-0012" num="0012">
<claim-text>Verfahren nach Anspruch 11, bei dem das Substrat ein polymeres Material umfasst und das Verbinden das Einarbeiten des photochromen Materials in mindestens einen Teil der ophthalmischen Vorrichtung durch Mischen des photochromen Materials mit mindestens einem Teil des polymeren Materials und/oder Binden des photochromen Materials an mindestens einen Teil des polymeren Materials umfasst, wobei das photochrome Material gegebenenfalls durch Copolymerisation des photochromen Materials mit mindestens einem Teil des polymeren Materials gebunden wird.</claim-text></claim>
<claim id="c-de-01-0013" num="0013">
<claim-text>Verfahren nach Anspruch 11, bei dem die ophthalmische Vorrichtung ein polymeres Material umfasst und das Verbinden des photochromen Materials mit mindestens einem Teil der ophthalmischen Vorrichtung das Gießen des photochromen Materials und des polymeren Materials am Ort oder das Aufbringen eines mindestens teilweisen Überzugs, der das photochrome Material umfasst, auf mindestens einen Teil der ophthalmischen Vorrichtung umfasst, wobei das Aufbringen des mindestens teilweisen Überzugs, der das photochrome Material umfasst, auf mindestens einen Teil der ophthalmischen Vorrichtung gegebenenfalls Tauchbeschichten, Aufschleudern, Walzenbeschichten, Spritzbeschichten, Vorhangbeschichten oder Gießen in der Form umfasst.</claim-text></claim>
<claim id="c-de-01-0014" num="0014">
<claim-text>Ophthalmische Vorrichtung nach Anspruch 6 oder 8, wobei der photochrome Artikel ein komplementäres photochromes Material, einen Photoinitiator, einen thermischen Initiator, einen Polymerisationsinhibitor, ein Lösungsmittel, ein Lichtschutzmittel, ein Wärmestabilisierungsmittel, ein Formtrennmittel, ein rheologiesteuerndes Mittel, ein Verlaufsmittel, einen Radikalfänger, einen Haftvermittler, ein Netzmittel, eine<!-- EPO <DP n="101"> --> verträglichkeitsvermittelnde Komponente, ein medizinisches Mittel, eine antimikrobielle Verbindung, ein reaktives Tönungsmittel, ein Pigment, einen copolymerisierbaren Farbstoff oder einen nichtpolymerisierbaren Farbstoff oder Mischungen davon umfasst.</claim-text></claim>
<claim id="c-de-01-0015" num="0015">
<claim-text>Ophthalmische Vorrichtung nach Anspruch 8, wobei die Vorrichtung mit einer Überzugszusammensetzung, die das photochrome Material umfasst, überzogen ist.</claim-text></claim>
</claims>
<claims id="claims03" lang="fr"><!-- EPO <DP n="102"> --><!-- EPO <DP n="103"> -->
<claim id="c-fr-01-0001" num="0001">
<claim-text>Dispositif ophtalmique comprenant au moins un matériau photochromique représenté par :
<chemistry id="chem0046" num="0046"><img id="ib0046" file="imgb0046.tif" wi="94" he="34" img-content="chem" img-format="tif"/></chemistry>
<chemistry id="chem0047" num="0047"><img id="ib0047" file="imgb0047.tif" wi="94" he="39" img-content="chem" img-format="tif"/></chemistry>
ou un mélange de ceux-ci, dans lequel :
<claim-text>(a) R<sub>1</sub> est : un substituant réactif R, ledit substituant réactif R étant représenté par l'une des formules suivantes :
<claim-text>-A-D-E-G-J ;</claim-text>
<claim-text>-G-E-G-J ;</claim-text>
<claim-text>-D-E-G-J ;</claim-text>
<claim-text>-A-D-J ;<!-- EPO <DP n="104"> --></claim-text>
<claim-text>-D-G-J ; et</claim-text>
<claim-text>-D-J ;</claim-text>
dans lesquelles<br/>
-A- est -C(=O)-, -OC(=O)-, -NHC(=O)-, ou -CH<sub>2</sub>- ;<br/>
-D- est : un résidu de diamine ou un dérivé de celui-ci, ledit résidu de diamine étant un résidu de diamine aliphatique, un résidu de diamine cycloaliphatique, un résidu de diazacycloalcane, un résidu d'amine azacycloaliphatique, un résidu de diaza-éther-couronne, ou un résidu de diamine aromatique, un premier azote d'amine dudit résidu de diamine formant une liaison avec -A-, la structure I, la structure II, la structure III, ou la structure IV, et un deuxième azote d'amine dudit résidu de diamine formant une liaison avec -E-, -G-, ou -J- ; ou un résidu d'aminoalcool ou un dérivé de celui-ci, ledit résidu d'aminoalcool étant un résidu d'aminoalcool aliphatique, un résidu d'amino-alcool cycloaliphatique, un résidu d'alcool azacyclo-aliphatique, un résidu d'alcool diazacycloaliphatique, ou un résidu d'aminoalcool aromatique, un azote d'amine dudit résidu d'aminoalcool formant une liaison avec -A-, la structure I, la structure II, la structure III, ou la structure IV, et un oxygène d'alcool dudit résidu d'aminoalcool formant une liaison avec -E-, -G-, ou -J-, ou ledit azote d'amine dudit résidu d'aminoalcool formant une liaison avec -E-, -G-, ou -J-, et ledit oxygène d'alcool dudit résidu d'aminoalcool formant une liaison avec -A-, la structure I, la structure II, la structure III, ou la structure IV ;<br/>
-E- est un résidu d'acide dicarboxylique ou un dérivé de celui-ci, ledit résidu d'acide dicarboxylique étant un résidu d'acide dicarboxylique aliphatique, un résidu d'acide dicarboxylique cycloaliphatique, ou un résidu d'acide dicarboxylique aromatique, un premier groupe carbonyle dudit résidu d'acide dicarboxylique formant une liaison avec -G- ou -D-, et un deuxième groupe carbonyle dudit résidu d'acide dicarboxylique formant une liaison avec -G- ;<br/>
chaque -G- est indépendamment :<!-- EPO <DP n="105"> -->
<claim-text>-[(OC<sub>2</sub>H<sub>4</sub>)<sub>x</sub>(OC<sub>3</sub>H<sub>6</sub>)<sub>y</sub>(OC<sub>4</sub>H<sub>8</sub>)<sub>z</sub>]-O-, dans lequel x, y et z sont chacun indépendamment un nombre entre 0 et 50, et la somme de x, y et z va de 1 à 50 ; ou un résidu de polyol ou un dérivé de celui-ci, ledit résidu de polyol étant un résidu de polyol aliphatique, un résidu de polyol cycloaliphatique, ou un résidu de polyol aromatique, un premier oxygène de polyol dudit résidu de polyol formant une liaison avec -E-, -D-, la structure I, la structure II, la structure III, ou la structure IV, et un deuxième oxygène de polyol dudit résidu de polyol formant une liaison avec -E- ou -J- ; et</claim-text>
-J est un groupe comprenant un acryle, méthacryle, crotyle, 2-(méthacryloxy)éthylcarbamyle, 2-(méthacryloxy)éthoxycarbonyle, 4-vinylphényle, vinyle, 1-chloro-vinyle, ou époxy, ou -J est un hydrogène, à condition que si -J est un hydrogène, -J soit lié à un oxygène du groupe -D- ou -G- ;<br/>
ou R<sub>1</sub> est : un hydrogène ; un hydroxyle ; un alkyle en C<sub>1</sub>-C<sub>3</sub> ; ou le groupe -C(=O)W, dans lequel W est -OR<sub>7</sub>, -N(R<sub>8</sub>)R<sub>9</sub>, un groupe pipéridino ou un groupe morpholino, R<sub>7</sub> étant un allyle, alkyle en C<sub>1</sub>-C<sub>6</sub>, phényle, phényle monosubstitué par un alkyle en C<sub>1</sub>-C<sub>6</sub>, phényle monosubstitué par un alcoxy en C<sub>1</sub>-C<sub>6</sub>, phényl-alkyle en C<sub>1</sub>-C<sub>3</sub>, phényl-alkyle en C<sub>1</sub>-C<sub>3</sub> monosubstitué par un alkyle en C<sub>1</sub>-C<sub>6</sub>, phényl-alkyle en C<sub>1</sub>-C<sub>3</sub> monosubstitué par un alcoxy en C<sub>1</sub>-C<sub>6</sub>, (alcoxy en C<sub>1</sub>-C<sub>6</sub>)-(alkyle en C<sub>2</sub>-C<sub>4</sub>), ou halogénoalkyle en C<sub>1</sub>-C<sub>6</sub>, et R<sub>8</sub> et R<sub>9</sub> étant chacun indépendamment un alkyle en C<sub>1</sub>-C<sub>6</sub>, cycloalkyle en C<sub>5</sub>-C<sub>7</sub>, phényle, phényle monosubstitué, ou phényle disubstitué, lesdits substituants du phényle étant un alkyle en C<sub>1</sub>-C<sub>6</sub> ou un alcoxy en C<sub>1</sub>-C<sub>6</sub>, et ledit substituant halogéno étant un chlore ou un fluor ;</claim-text>
<claim-text>(b) R<sub>1</sub>' est : le substituant réactif R ; un hydrogène ; un hydroxyle ; un alkyle en C<sub>1</sub>-C<sub>3</sub> ; ou le groupe -C(=O) W, dans lequel W est -OR<sub>7</sub>, -N(R<sub>8</sub>)R<sub>9</sub>, un groupe pipéridino ou un groupe morpholino, R<sub>7</sub> étant un allyle, alkyle en C<sub>1</sub>-C<sub>6</sub>, phényle, phényle monosubstitué par un alkyle en C<sub>1</sub>-C<sub>6</sub>, phényle monosubstitué par un alcoxy en C<sub>1</sub>-C<sub>6</sub>, phényl-alkyle en C<sub>1</sub>-C<sub>3</sub>, phényl-alkyle en<!-- EPO <DP n="106"> --> C<sub>1</sub>-C<sub>3</sub> monosubstitué par un alkyle en C<sub>1</sub>-C<sub>6</sub>, phényl-alkyle en C<sub>1</sub>-C<sub>3</sub> monosubstitué par un alcoxy en C<sub>1</sub>-C<sub>6</sub>, (alcoxy en C<sub>1</sub>-C<sub>6</sub>)-(alkyle en C<sub>2</sub>-C<sub>4</sub>), ou halogénoalkyle en C<sub>1</sub>-C<sub>6</sub>, et R<sub>8</sub> et R<sub>9</sub> étant chacun indépendamment un alkyle en C<sub>1</sub>-C<sub>6</sub>, cycloalkyle en C<sub>5</sub>-C<sub>7</sub>, phényle, phényle monosubstitué, ou phényle disubstitué, lesdits substituants du phényle étant un alkyle en C<sub>1</sub>-C<sub>6</sub> ou un alcoxy en C<sub>1</sub>-C<sub>6</sub>, et ledit substituant halogéno étant un chlore ou un fluor ;</claim-text>
<claim-text>(c) R<sub>2</sub> est : le substituant réactif R ; un hydrogéne ; un alkyle en C<sub>1</sub>-C<sub>6</sub> ; un cycloalkyle en C<sub>3</sub>-C<sub>7</sub> ; un phényle substitué ou non substitué ; ou -OR<sub>10</sub> ou -OC(=O)R<sub>10</sub>, R<sub>10</sub> étant un hydrogène, alkyle en C<sub>1</sub>-C<sub>6</sub>, phényl-alkyle en C<sub>1</sub>-C<sub>3</sub>, phényl-alkyle en C<sub>1</sub>-C<sub>3</sub> monosubstitué par un alkyle en C<sub>1</sub>-C<sub>6</sub>, phényl-alkyle en C<sub>1</sub>-C<sub>3</sub> monosubstitué par un alcoxy en C<sub>1</sub>-C<sub>6</sub>, (alcoxy en C<sub>1</sub>-C<sub>6</sub>)-(alkyle en C<sub>2</sub>-C<sub>4</sub>), cycloalkyle en C<sub>3</sub>-C<sub>7</sub>, ou cycloalkyle en C<sub>3</sub>-C<sub>7</sub> monosubstitué par un alkyle en C<sub>1</sub>-C<sub>4</sub>, et lesdits substituants du phényle étant un alkyle en C<sub>1</sub>-C<sub>6</sub> ou un alcoxy en C<sub>1</sub>-C<sub>6</sub> ;</claim-text>
<claim-text>(d) n est un entier allant de 0 à 4, R<sub>3</sub> et R<sub>4</sub> étant indépendamment pour chaque occurrence : le substituant réactif R ; un hydrogène ; un fluor ; un chlore ; un alkyle en C<sub>1</sub>-C<sub>6</sub> ; un cycloalkyle en C<sub>3</sub>-C<sub>7</sub> ; un phényle substitué ou non substitué ; -OR<sub>10</sub> ou -OC(=O)R<sub>10</sub>, R<sub>10</sub> étant un hydrogène, alkyle en C<sub>1</sub>-C<sub>6</sub>, phényl-alkyle en C<sub>1</sub>-C<sub>3</sub>, phényl-alkyle en C<sub>1</sub>-C<sub>3</sub> monosubstitué par un alkyle en C<sub>1</sub>-C<sub>6</sub>, phényl-alkyle en C<sub>1</sub>-C<sub>3</sub> monosubstitué par un alcoxy en C<sub>1</sub>-C<sub>6</sub>, (alcoxy en C<sub>1</sub>-C<sub>6</sub>)-(alkyle en C<sub>2</sub>-C<sub>4</sub>), cycloalkyle en C<sub>3</sub>-C<sub>7</sub>, ou cycloalkyle en C<sub>3</sub>-C<sub>7</sub> monosubstitué par un alkyle en C<sub>1</sub>-C<sub>4</sub>, et lesdits substituants du phényle étant un alkyle en C<sub>1</sub>-C<sub>6</sub> ou un alcoxy en C<sub>1</sub>-C<sub>6</sub> ; un phényle monosubstitué, ledit phényle ayant un substituant placé à la position para, le substituant étant : un résidu d'acide dicarboxylique ou un dérivé de celui-ci, un résidu de diamine ou un dérivé de celui-ci, un résidu d'aminoalcool ou un dérivé de celui-ci, un résidu de polyol ou un dérivé de celui-ci, -CH<sub>2</sub>-, -(CH<sub>2</sub>)<sub>t</sub>-, ou -[O-(CH<sub>2</sub>)<sub>t</sub>]<sub>k</sub>-, t étant l'entier 2, 3, 4, 5 ou 6, et k étant un entier de 1 à 50, le<!-- EPO <DP n="107"> --> substituant étant lié à un groupe aryle sur un autre matériau photochromique ; -N(R<sub>11</sub>)R<sub>12</sub>, R<sub>11</sub> et R<sub>12</sub> étant chacun indépendamment un hydrogène, alkyle en C<sub>1</sub>-C<sub>8</sub>, phényle, naphtyle, furanyle, benzofuran-2-yle, benzofuran-3-yle, thiényle, benzothién-2-yle, benzothién-3-yle, dibenzofuranyle, dibenzothiényle, benzopyridyle, fluorényle, alkylaryle en C<sub>1</sub>-C<sub>8</sub>, cycloalkyl, en C<sub>3</sub>-C<sub>20</sub>, bicycloalkyle en C<sub>4</sub>-C<sub>20</sub>, tricycloalkyle en C<sub>5</sub>-C<sub>20</sub>, ou alcoxyalkyle en C<sub>1</sub>-C<sub>20</sub>, ledit groupe aryle étant un phényle ou un naphtyle, ou R<sub>11</sub> et R<sub>12</sub> se combinant avec l'atome d'azote pour former un cycle hétérobicycloalkyle en C<sub>3</sub>-C<sub>20</sub> ou un cycle hétérotricycloalkyle en C<sub>4</sub>-C<sub>20</sub> ; un cycle contenant de l'azote représenté par la formule graphique VA suivante :
<chemistry id="chem0048" num="0048"><img id="ib0048" file="imgb0048.tif" wi="53" he="20" img-content="chem" img-format="tif"/></chemistry>
dans laquelle chaque Y est indépendamment choisi pour chaque occurrence parmi -CH<sub>2</sub>-, -CH(R<sub>13)</sub>-, -C(R<sub>13</sub>)<sub>2</sub>-, -CH(aryl)-, -C(aryl)<sub>2</sub>-, et -C(R<sub>13</sub>)(aryl)-, Z est -Y-, -O-, -S-, -S (O) -, -SO<sub>2</sub>-, -NH-, -N(R<sub>13</sub>)-, ou -N(aryl)-, chaque R<sub>13</sub> étant indépendamment un alkyle en C<sub>1</sub>-C<sub>6</sub>, chaque aryle étant indépendamment un phényle ou un naphtyle, m est l'entier 1, 2 ou 3, et p est l'entier 0, 1, 2 ou 3 et quand p vaut 0, Z est Y ; un groupe représenté par l'une des formules graphiques VB ou VC suivantes :
<chemistry id="chem0049" num="0049"><img id="ib0049" file="imgb0049.tif" wi="85" he="24" img-content="chem" img-format="tif"/></chemistry>
dans lesquelles R<sub>15</sub>, R<sub>16</sub> et R<sub>17</sub> sont chacun indépendamment un hydrogène, un alkyle en C<sub>1</sub>-C<sub>6</sub>, un phényle, ou un naphtyle, ou les groupes R<sub>15</sub> et R<sub>16</sub> forment conjointement un cycle de 5 à 8 atomes de carbone, chaque R<sub>14</sub> est<!-- EPO <DP n="108"> --> indépendamment pour chaque occurrence un alkyle en C<sub>1</sub>-C<sub>6</sub>, un alcoxy en C<sub>1</sub>-C<sub>6</sub>, un fluor, ou un chlore, et p est l'entier 0, 1, 2 ou 3 ; ou une amine spirobicylique en C<sub>4</sub>-C<sub>18</sub> non substituée, mono- ou disubstituée, ou une amine spirotricylique en C<sub>4</sub>-C<sub>18</sub> non substituée, mono- ou disubstituée, lesdits substituants étant indépendamment un aryle, un alkyle en C<sub>1</sub>-C<sub>6</sub>, un alcoxy en C<sub>1</sub>-C<sub>6</sub>, ou un phényl-alkyle en C<sub>1</sub>-C<sub>6</sub> ; ou<br/>
un groupe R<sub>3</sub> dans la position 6 et un groupe R<sub>3</sub> dans la position 7 forment conjointement un groupe représenté par l'une des formules VD et VE :
<chemistry id="chem0050" num="0050"><img id="ib0050" file="imgb0050.tif" wi="89" he="19" img-content="chem" img-format="tif"/></chemistry>
dans lesquelles T et T' sont chacun indépendamment un oxygène ou le groupe -NR<sub>11</sub>-, R<sub>11</sub>, R<sub>15</sub> et R<sub>16</sub> étant tels que définis ci-dessus ;</claim-text>
<claim-text>(e) R<sub>5</sub> et R<sub>6</sub> sont chacun indépendamment le substituant réactif R ; un hydrogène ; un hydroxyle ; un alkyle en C<sub>1</sub>-C<sub>6</sub> ; un cycloalkyle en C<sub>3</sub>-C<sub>7</sub> ; un allyle ; un phényle substitué ou non substitué ; un benzyle substitué ou non substitué ; un chlore ; un fluor ; le groupe -C(=O)W', dans lequel W' est un hydrogène, hydroxyle, alkyle en C<sub>1</sub>-C<sub>6</sub>, alcoxy en C<sub>1</sub>-C<sub>6</sub>, les groupes aryle phényle ou naphtyle non substitués, mono- ou disubstitués, un phénoxy, phénoxy mono- ou disubstitué par un alcoxy en C<sub>1</sub>-C<sub>6</sub>, phénoxy mono- ou disubstitué, par un alcoxy en C<sub>1</sub>-C<sub>6</sub>, amino, mono(alkyl en C<sub>1</sub>-C<sub>6</sub>)amino, di(alkyl en C<sub>1</sub>-C<sub>6</sub>) amino, phénylamino, phénylamino mono- ou disubstitué par un alkyle en C<sub>1</sub>-C<sub>6</sub>, ou phénylamino mono- ou disubstitué par un alcoxy en C<sub>1</sub>-C<sub>6</sub> ; -OR<sub>18</sub>, R<sub>18</sub> étant un alkyle en C<sub>1</sub>-C<sub>6</sub>, phényl-alkyle en C<sub>1</sub>-C<sub>3</sub>, phényl-alkyle en C<sub>1</sub>-C<sub>3</sub> monosubstitué par un alkyle en C<sub>1</sub>-C<sub>6</sub>, phényl-alkyle en C<sub>1</sub>-C<sub>3</sub> monosubstitué par un alcoxy en C<sub>1</sub>-C<sub>6</sub>, (alcoxy en C<sub>1</sub>-C<sub>6</sub>)-(alkyle en C<sub>2</sub>-C<sub>4</sub>), cycloalkyle en C<sub>3</sub>-C<sub>7</sub>, cycloalkyle en C<sub>3</sub>-C<sub>7</sub> monosubstitué par un alkyle en C<sub>1</sub>-C<sub>4</sub>, chloroalkyle en C<sub>1</sub>-C<sub>6</sub>,<!-- EPO <DP n="109"> --> fluoroalkyle en C<sub>1</sub>-C<sub>6</sub>, allyle, ou le groupe -CH(R<sub>19</sub>)Y', dans lequel R<sub>19</sub> est un hydrogène ou un alkyle en C<sub>1</sub>-C<sub>3</sub>, et Y' est CN, CF<sub>3</sub> ou COOR<sub>20</sub>, R<sub>20</sub> étant un hydrogène ou un alkyle en C<sub>1</sub>-C<sub>3</sub>, ou R<sub>18</sub> étant le groupe -C(=O)W", dans lequel W" est un hydrogène, alkyle en C<sub>1</sub>-C<sub>6</sub>, alcoxy en C<sub>1</sub>-C<sub>6</sub>, les groupes aryle phényle ou naphtyle non substitués, mono- ou disubstitués, un phénoxy, phénoxy mono- ou disubstitué par un alkyle en C<sub>1</sub>-C<sub>6</sub>, phénoxy mono- ou disubstitué par un alcoxy en C<sub>1</sub>-C<sub>6</sub>, amino, mono(alkyl en C<sub>1</sub>-C<sub>6</sub>)amino, di(alkyl en C<sub>1</sub>-C<sub>6</sub>)amino, phénylamino, phénylamino mono- ou disubstitué par un alkyle en C<sub>1</sub>-C<sub>6</sub>, ou phénylamino mono- ou disubstitué par un alcoxy en C<sub>1</sub>-C<sub>6</sub>, chacun desdits substituants du groupe phényle, benzyle ou aryle étant indépendamment un alkyle en C<sub>1</sub>-C<sub>6</sub> ou un alcoxy en C<sub>1</sub>-C<sub>6</sub> ; ou un phényle monosubstitué, ledit phényle ayant un substituant placé à la position para, le substituant étant : un résidu d'acide dicarboxylique ou un dérivé de celui-ci, un résidu de diamine ou un dérivé de celui-ci, un résidu d'aminoalcool ou un dérivé de celui-ci, un résidu de polyol ou un dérivé de celui-ci, -CH<sub>2</sub>-, -(CH<sub>2</sub>)<sub>t</sub>-, ou -[O(CH<sub>2</sub>)<sub>t</sub>]<sub>k</sub>-, t étant l'entier 2, 3, 4, 5 ou 6, et k étant un entier de 1 à 50, le substituant étant lié à un groupe aryle sur un autre matériau photochromique ; ou R<sub>5</sub> et R<sub>6</sub> forment conjointement un groupe oxo, un groupe spiro-carbocyclique contenant 3 à 6 atomes de carbone, ou un groupe spiro-hétérocyclique contenant 1 à 2 atomes d'oxygène et 3 à 6 atomes de carbone dont l'atome de spirocarbone, lesdits groupes spirocarbocycliques et spiro-hétérocycliques étant annelés avec 0, 1 ou 2 cycles benzène ; et</claim-text>
<claim-text>(f) B et B' sont chacun indépendamment un phényle substitué ; un aryle substitué ; un groupe 9-julolidinyle substitué ; un groupe hétéroaromatique substitué choisi parmi les groupes pyridyle, furanyle, benzofuran-2-yle, benzofuran-3-yle, thiényle, benzothién-2-yle, benzothién-3-yle, dibenzofuranyle, dibenzothiényle, carbazoyle, benzopyridyle, indolinyle, et fluorényle, le substituant du groupe phényle, aryle, 9-julolidinyle ou hétéro-aromatique<!-- EPO <DP n="110"> --> étant le substituant réactif R ; un groupe phényle ou aryle non substitué, mono-, di-, ou trisubstitué ; un groupe 9-julolidinyle ; ou un groupe hétéroaromatique non substitué, mono- ou disubstitué choisi parmi les groupes pyridyle, furanyle, benzofuran-2-yle, benzofuran-3-yle, thiényle, benzothién-2-yle, benzothién-3-yle, dibenzofuranyle, dibenzothiényle, carbazoyle, benzopyridyle, indolinyle, et fluvrényle, chacun des substituants des groupes phényle, aryle et hétéroaromatique étant chacun indépendamment : un hydroxyle, un groupe -C(=O)R<sub>21</sub>, dans lequel R<sub>21</sub> est -OR<sub>22</sub>, -N(R<sub>23</sub>)R<sub>24</sub>, un groupe pipéridino ou un groupe morpholino, R<sub>22</sub> étant un allyle, alkyle en C<sub>1</sub>-C<sub>6</sub>, phényle, phényle monosubstitué par un alkyle en C<sub>1</sub>-C<sub>6</sub>, phényle monosubstitué par un alcoxy en C<sub>1</sub>-C<sub>6</sub>, phényl-alkyle en C<sub>1</sub>-C<sub>3</sub>, phényl-alkyle en C<sub>1</sub>-C<sub>3</sub> monosubstitué par un alkyle en C<sub>1</sub>-C<sub>6</sub>, phényl-alkyle en C<sub>1</sub>-C<sub>3</sub> monosubstitué par un alcoxy en C<sub>1</sub>-C<sub>6</sub>, (alcoxy en C<sub>1</sub>-C<sub>6</sub>)-(alkyle en C<sub>2</sub>-C<sub>4</sub>), ou halogénoalkyle en C<sub>1</sub>-C<sub>6</sub>, et R<sub>23</sub> et R<sub>24</sub> étant chacun indépendamment un alkyl en C<sub>1</sub>-C<sub>6</sub>, cycloalkyle en C<sub>5</sub>-C<sub>7</sub>, phényle, ou phényle substitué, les substituants du phényle étant un alkyle en C<sub>1</sub>-C<sub>6</sub> ou un alcoxy en C<sub>1</sub>-C<sub>6</sub>, et ledit substituant halogéno étant un chlore ou un fluor, un groupe aryle, mono (alcoxy en C<sub>1</sub>-C<sub>12</sub>)aryle, di(alcoxy en C<sub>1</sub>-C<sub>12</sub>)aryle, mono(alkyl en C<sub>1</sub>-C<sub>12</sub>)aryle, di(alkyl en C<sub>1</sub>-C<sub>12</sub>)aryle, halogénoaryle, (cycloalkyl en C<sub>3</sub>-C<sub>7</sub>)aryle, cycloalkyle en C<sub>3</sub>-C<sub>7</sub>, cycloalkyloxy en C<sub>3</sub>-C<sub>7</sub>, (cycloalkyloxy en C<sub>3</sub>-C<sub>7</sub>)-(alkyle en C<sub>1</sub>-C<sub>12</sub>), (cycloalkyloxy en C<sub>3</sub>-C<sub>7</sub>)-(alcoxy en C<sub>1</sub>-C<sub>12</sub>), aryl-alkyle en C<sub>1</sub>-C<sub>12</sub>, aryl-alcoxy en C<sub>1</sub>-C<sub>12</sub>, aryloxy, aryloxy-alkyle en C<sub>1</sub>-C<sub>12</sub>, aryloxy-alcoxy en C<sub>1</sub>-C<sub>12</sub>, mono- ou di (alkyl en C<sub>1</sub>-C<sub>12</sub>)aryl-alkyle en C<sub>1</sub>-C<sub>12</sub>, mono- ou di (alcoxy en C<sub>1</sub>-C<sub>12</sub>) aryl-alkyle en C<sub>1</sub>-C<sub>12</sub>, mono- ou di(alkyl en C<sub>1</sub>-C<sub>12</sub>)aryl-alcoxy en C<sub>1</sub>-C<sub>12</sub>, mono- ou di(alcoxy en C<sub>1</sub>-C<sub>12</sub>)aryl-alcoxy en C<sub>1</sub>-C<sub>12</sub>, amino, mono- ou di(alkyl en C<sub>1</sub>-C<sub>12</sub>)amino, diarylamino, pipérazino, N-(alkyl en C<sub>1</sub>-C<sub>12</sub>)pipérazino, N-arylpipérazino, aziridino, indolino, pipéridino, morpholino, thiomorpholino, tétrahydroquinolino, tétrahydroisoquinolino, pyrrolidyle, alkyle<!-- EPO <DP n="111"> --> en C<sub>1</sub>-C<sub>12</sub>, halogénoalkyle en C<sub>1</sub>-C<sub>12</sub>, alcoxy en C<sub>1</sub>-C<sub>12</sub>, mono(alcoxy en C<sub>1</sub>-C<sub>12</sub>)-(alkyle en C<sub>1</sub>-C<sub>12</sub>), acryloxy, méthacryloxy, ou halogéno ; un groupe non substitué ou monosubstitué choisi parmi les groupes pyrazolyle, imidazolyle, pyrazolinyle, imidazolinyle, pyrrolinyle, phénothiazinyle, phénoxazinyle, phénazinyle et acridinyle, chacun desdits substituants étant un alkyle en C<sub>1</sub>-C<sub>12</sub>, un alcoxy en C<sub>1</sub>-C<sub>12</sub>, un phényle, ou un halogène ; un phényle monosubstitué, ledit phényle ayant un substituant placé à la position para, le substituant étant : un résidu d'acide dicarboxylique ou un dérivé de celui-ci, un résidu de diamine ou un dérivé de celui-ci, un résidu d'aminoalcool ou un dérivé de celui-ci, un résidu de polyol ou un dérivé de celui-ci, -CH<sub>2</sub>-, -(CH<sub>2</sub>)<sub>t</sub>-, ou -[O-(CH<sub>2</sub>)<sub>t</sub>]<sub>k</sub>-, t étant l'entier 2, 3, 4, 5 ou 6, et k étant un entier de 1 à 50, le substituant étant lié à un groupe aryle sur un autre matériau photochromique ; un groupe représenté par l'une des formules suivantes :
<chemistry id="chem0051" num="0051"><img id="ib0051" file="imgb0051.tif" wi="74" he="16" img-content="chem" img-format="tif"/></chemistry>
dans lesquelles K est -CH<sub>2</sub>- ou -O-, M est -O- ou un azote substitué, à condition que si M est un azote substitué, K soit -CH<sub>2</sub>-, les substituants de l'azote substitué étant un hydrogène, un alkyle en C<sub>1</sub>-C<sub>12</sub>, ou un acyle en C<sub>1</sub>-C<sub>12</sub>, chaque R<sub>25</sub> est indépendamment choisi pour chaque occurrence parmi un alkyle en C<sub>1</sub>-C<sub>12</sub>, un alcoxy en C<sub>1</sub>-C<sub>12</sub>, un hydroxyle, et un halogène, R<sub>26</sub> et R<sub>27</sub> sont chacun indépendamment un hydrogène ou un alkyle en C<sub>1</sub>-C<sub>12</sub>, et u est un entier allant de 0 à 2 ; ou un groupe représenté par :
<chemistry id="chem0052" num="0052"><img id="ib0052" file="imgb0052.tif" wi="39" he="13" img-content="chem" img-format="tif"/></chemistry>
dans lequel R<sub>28</sub> est un hydrogène ou un alkyle en C<sub>1</sub>-C<sub>12</sub>, et R<sub>29</sub> est un groupe non substitué, mono-, ou disubstitué choisi parmi les groupes naphtyle, phényle,<!-- EPO <DP n="112"> --> furanyle, et thiényle, les substituants étant un alkyle en C<sub>1</sub>-C<sub>12</sub>, un alcoxy en C<sub>1</sub>-C<sub>12</sub>, ou un halogène ; ou<br/>
B et B', considérés conjointement, forment un groupe fluorén-9-ylidène ou un groupe fluorén-9-ylidène mono- ou disubstitué, chacun desdits substituants du groupe fluorén-9-ylidène étant indépendamment choisi parmi un alkyle en C<sub>1</sub>-C<sub>12</sub>, un alcoxy en C<sub>1</sub>-C<sub>12</sub>, et un halogène :</claim-text>
à condition que le matériau photochromique comprenne au moins un substituant réactif R.</claim-text></claim>
<claim id="c-fr-01-0002" num="0002">
<claim-text>Dispositif ophtalmique selon la revendication 1, dans lequel le matériau photochromique est représenté par :
<chemistry id="chem0053" num="0053"><img id="ib0053" file="imgb0053.tif" wi="75" he="39" img-content="chem" img-format="tif"/></chemistry></claim-text></claim>
<claim id="c-fr-01-0003" num="0003">
<claim-text>Dispositif ophtalmique selon la revendication 1 ou la revendication 2, dans lequel le matériau photochromique comprend deux substituants réactifs R.</claim-text></claim>
<claim id="c-fr-01-0004" num="0004">
<claim-text>Dispositif ophtalmique selon la revendication 1 ou la revendication 2, dans lequel R<sub>3</sub> comprend un substituant à la position 6 et 7 sur la structure III ou la structure IV, lesdits substituants à la position 6 et 7 étant chacun indépendamment le substituant réactif R ; -OR<sub>10</sub>, dans lequel R<sub>10</sub> est un hydrogène ; un alkyle en C<sub>1</sub>-C<sub>6</sub> ; ou un groupe contenant de l'azote, ledit groupe contenant de l'azote étant :
<claim-text>(i) -N(R<sub>11</sub>)R<sub>12</sub>, dans lequel R<sub>11</sub> et R<sub>12</sub> sont chacun indépendamment un hydrogène, un alkyle en C<sub>1</sub>-C<sub>8</sub>, un phényle, ou un alcoxyalkyle en C<sub>1</sub>-C<sub>20</sub>, ou</claim-text>
<claim-text>(ii) un cycle contenant de l'azote représenté par<!-- EPO <DP n="113"> --> la formule graphique VA suivante :
<chemistry id="chem0054" num="0054"><img id="ib0054" file="imgb0054.tif" wi="50" he="21" img-content="chem" img-format="tif"/></chemistry>
dans laquelle chaque Y est indépendamment choisi pour chaque occurrence parmi -CH<sub>2</sub>-, -CH(R<sub>13</sub>)-, -C(R<sub>13</sub>)<sub>2</sub>-, -CH(aryl)-, -C (aryl) <sub>2</sub>-, et -C(R<sub>13</sub>) (aryl)-, Z est -Y-, -O-, -S-, -S(O)-, -SO<sub>2</sub>-, -NH-, -N(R<sub>13</sub>)-, ou -N(aryl)-, chaque R<sub>13</sub> étant indépendamment un alkyle en C<sub>1</sub>-C<sub>6</sub>, chaque aryle étant indépendamment un phényle ou un naphtyle, m est l'entier 1, 2 ou 3, et p est l'entier 0, 1, 2 ou 3 et quand p vaut 0, Z est Y.</claim-text></claim-text></claim>
<claim id="c-fr-01-0005" num="0005">
<claim-text>Dispositif ophtalmique selon la revendication 1 ou la revendication 2, dans lequel R<sub>5</sub> et R<sub>6</sub> sont chacun indépendamment le substituant réactif R ; un alkyle en C<sub>1</sub>-C<sub>6</sub> ; un hydroxyle ; ou -OR<sub>18</sub>, dans lequel R<sub>18</sub> est un alkyle en C<sub>1</sub>-C<sub>6</sub>.</claim-text></claim>
<claim id="c-fr-01-0006" num="0006">
<claim-text>Dispositif ophtalmique selon la revendication 1 ou la revendication 2, ledit dispositif étant formé à partir d'au moins un matériau polymère comprenant ledit matériau photochromique incorporé dans au moins une partie de celui-ci, le matériau polymère étant éventuellement formé à partir de composants comprenant des monomères hydrophiles, des polymères hydrophiles et des composants de silicone.</claim-text></claim>
<claim id="c-fr-01-0007" num="0007">
<claim-text>Dispositif ophtalmique selon la revendication 6, ledit dispositif ophtalmique étant une lentille de contact et ledit matériau polymère comprenant un hydrogel.</claim-text></claim>
<claim id="c-fr-01-0008" num="0008">
<claim-text>Dispositif ophtalmique selon la revendication 1 ou la revendication 2, le matériau photochromique étant lié à au moins une partie du dispositif ophtalmique, le dispositif ophtalmique étant éventuellement choisi dans<!-- EPO <DP n="114"> --> le groupe constitué par les lentilles de contact souples, les lentilles de contact rigides, les lentilles intraoculaires, les lentilles de recouvrement, les inserts oculaires, et les inserts optiques.</claim-text></claim>
<claim id="c-fr-01-0009" num="0009">
<claim-text>Dispositif ophtalmique selon la revendication 1 ou la revendication 2, le dispositif ophtalmique étant une lentille de contact souple.</claim-text></claim>
<claim id="c-fr-01-0010" num="0010">
<claim-text>Dispositif ophtalmique selon la revendication 8, le dispositif ophtalmique comprenant un matériau polymère et le matériau photochromique étant mélangé avec au moins une partie du matériau polymère et/ou lié à au moins une partie du matériau polymère, le matériau photochromique étant éventuellement lié par polymérisation à au moins une partie du matériau polymère, et un revêtement au moins partiel d'un matériau de revêtement polymère étant éventuellement lié à au moins une partie d'une surface du dispositif ophtalmique, le matériau de revêtement polymère comprenant le matériau photochromique.</claim-text></claim>
<claim id="c-fr-01-0011" num="0011">
<claim-text>Procédé de fabrication d'un dispositif ophtalmique photochromique de la revendication 1 ou la revendication 2, comprenant la liaison du matériau photochromique à au moins une partie du dispositif ophtalmique.</claim-text></claim>
<claim id="c-fr-01-0012" num="0012">
<claim-text>Procédé selon la revendication 11, dans lequel le substrat comprend un matériau polymère, et la liaison comprend l'incorporation du matériau photochromique dans au moins une partie du dispositif ophtalmique par mélange du matériau photochromique avec au moins une partie du matériau polymère et/ou liaison du matériau photochromique à au moins une partie du matériau polymère, le matériau photochromique étant éventuellement lié par copolymérisation du matériau photochromique à au moins une partie du matériau polymère.</claim-text></claim>
<claim id="c-fr-01-0013" num="0013">
<claim-text>Procédé selon la revendication 11, dans lequel le dispositif ophtalmique comprend un matériau polymère et<!-- EPO <DP n="115"> --> la liaison du matériau photochromique à au moins une partie dudit dispositif ophtalmique comprend le coulage en place du matériau photochromique et du matériau polymère, ou l'application d'un revêtement au moins partiel comprenant le matériau photochromique à au moins une partie du dispositif ophtalmique, l'application du revêtement au moins partiel comprenant le matériau photochromique à au moins une partie du dispositif ophtalmique comprenant éventuellement un revêtement au trempé, un dépôt à la tournette, un revêtement au rouleau, un revêtement par pulvérisation, une application au rideau, ou une coulée en moule.</claim-text></claim>
<claim id="c-fr-01-0014" num="0014">
<claim-text>Dispositif ophtalmique selon la revendication 6 ou la revendication 8, dans lequel l'article photochromique comprend au moins un élément parmi un matériau photochromique complémentaire, un photoinitiateur, un initiateur thermique, un inhibiteur de polymérisation, un solvant, un photostabilisant, un stabilisant thermique, un agent de démoulage, un agent de contrôle de la rhéologie, un agent d'unisson, un piège à radicaux libres, un agent d'accrochage, un agent mouillant, un composant de compatibilisation, un agent médicinal, un composé antimicrobien, une teinte réactive, un pigment, un colorant copolymérisable et non polymérisable, et les mélanges de ceux-ci.</claim-text></claim>
<claim id="c-fr-01-0015" num="0015">
<claim-text>Dispositif ophtalmique selon la revendication 8, ledit dispositif étant recouvert d'une composition de revêtement comprenant le matériau photochromique.</claim-text></claim>
</claims>
<drawings id="draw" lang="en"><!-- EPO <DP n="116"> -->
<figure id="f0001" num="1"><img id="if0001" file="imgf0001.tif" wi="165" he="207" img-content="drawing" img-format="tif"/></figure><!-- EPO <DP n="117"> -->
<figure id="f0002" num="2"><img id="if0002" file="imgf0002.tif" wi="153" he="222" img-content="drawing" img-format="tif"/></figure>
</drawings>
<ep-reference-list id="ref-list">
<heading id="ref-h0001"><b>REFERENCES CITED IN THE DESCRIPTION</b></heading>
<p id="ref-p0001" num=""><i>This list of references cited by the applicant is for the reader's convenience only. It does not form part of the European patent document. Even though great care has been taken in compiling the references, errors or omissions cannot be excluded and the EPO disclaims all liability in this regard.</i></p>
<heading id="ref-h0002"><b>Patent documents cited in the description</b></heading>
<p id="ref-p0002" num="">
<ul id="ref-ul0001" list-style="bullet">
<li><patcit id="ref-pcit0001" dnum="US6555028B"><document-id><country>US</country><doc-number>6555028</doc-number><kind>B</kind></document-id></patcit><crossref idref="pcit0001">[0023]</crossref><crossref idref="pcit0002">[0024]</crossref><crossref idref="pcit0003">[0024]</crossref><crossref idref="pcit0004">[0024]</crossref><crossref idref="pcit0005">[0024]</crossref><crossref idref="pcit0006">[0024]</crossref><crossref idref="pcit0007">[0024]</crossref><crossref idref="pcit0008">[0024]</crossref><crossref idref="pcit0009">[0024]</crossref><crossref idref="pcit0010">[0024]</crossref></li>
<li><patcit id="ref-pcit0002" dnum="US6296785B"><document-id><country>US</country><doc-number>6296785</doc-number><kind>B</kind></document-id></patcit><crossref idref="pcit0011">[0066]</crossref></li>
<li><patcit id="ref-pcit0003" dnum="US5458814A"><document-id><country>US</country><doc-number>5458814</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0012">[0066]</crossref></li>
<li><patcit id="ref-pcit0004" dnum="US5645767A"><document-id><country>US</country><doc-number>5645767</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0013">[0066]</crossref></li>
<li><patcit id="ref-pcit0005" dnum="US5070215A"><document-id><country>US</country><doc-number>5070215</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0014">[0082]</crossref><crossref idref="pcit0022">[0087]</crossref></li>
<li><patcit id="ref-pcit0006" dnum="US4190277A"><document-id><country>US</country><doc-number>4190277</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0015">[0082]</crossref></li>
<li><patcit id="ref-pcit0007" dnum="US3808178A"><document-id><country>US</country><doc-number>3808178</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0016">[0087]</crossref></li>
<li><patcit id="ref-pcit0008" dnum="US4120570A"><document-id><country>US</country><doc-number>4120570</doc-number><kind>A</kind></document-id></patcit><crossref idref="pcit0017">[0087]</crossref></li>
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