Global Patent Index - EP 2726403 A4

EP 2726403 A4 20150408 - HYBRID MATERIALS AND NANOCOMPOSITE MATERIALS, METHODS OF MAKING SAME, AND USES THEREOF

Title (en)

HYBRID MATERIALS AND NANOCOMPOSITE MATERIALS, METHODS OF MAKING SAME, AND USES THEREOF

Title (de)

HYBRIDMATERIALIEN UND NANOVERBUNDMATERIALIEN, HERSTELLUNGSVERFAHREN DAFÜR UND VERWENDUNGEN DAVON

Title (fr)

MATÉRIAUX HYBRIDES ET MATÉRIAUX NANOCOMPOSITES, LEURS PROCÉDÉS DE FABRICATION ET LEURS UTILISATIONS

Publication

EP 2726403 A4 20150408 (EN)

Application

EP 12804017 A 20120702

Priority

  • US 201161503085 P 20110630
  • US 201161578464 P 20111221
  • US 2012045188 W 20120702

Abstract (en)

[origin: WO2013003836A2] Hybrid materials and nanocomposite materials, methods of making and using such materials. The nanoparticles of the nanocomposite are formed in situ during pyrolysis of a hybrid material comprising metal precursor compounds. The nanoparticles are uniformly distributed in the carbon matrix of the nanocomposite. The nanocomposite materials can be used in devices such as, for example, electrodes and on-chip inductors.

IPC 8 full level

B82B 1/00 (2006.01); B82B 3/00 (2006.01); C01G 19/00 (2006.01); C01G 49/06 (2006.01); C01G 49/08 (2006.01); H01M 2/16 (2006.01)

CPC (source: EP KR)

B82B 1/00 (2013.01 - KR); B82B 3/00 (2013.01 - KR); C01B 25/45 (2013.01 - EP KR); C01B 32/05 (2017.07 - EP KR); C01G 1/02 (2013.01 - EP KR); C01G 1/12 (2013.01 - EP KR); C01G 19/00 (2013.01 - KR); C01G 39/06 (2013.01 - EP KR); C01G 45/02 (2013.01 - EP KR); C01G 49/06 (2013.01 - KR); C01G 49/08 (2013.01 - EP KR); H01M 4/5825 (2013.01 - EP KR); H01M 4/583 (2013.01 - EP KR); H01M 4/625 (2013.01 - EP KR); C01P 2002/72 (2013.01 - EP); C01P 2002/82 (2013.01 - EP); C01P 2002/85 (2013.01 - EP); C01P 2002/88 (2013.01 - EP); C01P 2004/04 (2013.01 - EP); C01P 2004/80 (2013.01 - EP); C01P 2006/17 (2013.01 - EP); Y02E 60/10 (2013.01 - EP KR)

Citation (search report)

  • [X] US 7385003 B1 20080610 - THOMA STEVEN G [US], et al
  • [X] YUANZHE PIAO ET AL: "Facile scalable synthesis of magnetite nanocrystals embedded in carbon matrix as superior anode materials for lithium-ion batteries", CHEMICAL COMMUNICATIONS, vol. 46, no. 1, 1 January 2010 (2010-01-01), pages 118, XP055171351, ISSN: 1359-7345, DOI: 10.1039/b920037a & YUANZHE PIAO ET AL: "Supplementary Information for: Facile scalable synthesis of magnetite nanocrystals embedded in carbon matrix as superior anode materials for lithium-ion batteries", CHEM. COMMUN., 2010,46, 118-120, 16 November 2009 (2009-11-16), pages 1 - 11, XP055171391, Retrieved from the Internet <URL:http://www.rsc.org/suppdata/cc/b9/b920037a/b920037a.pdf> [retrieved on 20150223], DOI: 10.1039/B920037A
  • See references of WO 2013003836A2

Designated contracting state (EPC)

AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL NO PL PT RO RS SE SI SK SM TR

DOCDB simple family (publication)

WO 2013003836 A2 20130103; WO 2013003836 A3 20130425; WO 2013003836 A9 20140130; AU 2012275046 A1 20140123; AU 2012275046 A9 20140220; CA 2840747 A1 20130103; CN 103764546 A 20140430; CN 103764546 B 20190820; EP 2726403 A2 20140507; EP 2726403 A4 20150408; JP 2014523468 A 20140911; KR 20140050016 A 20140428

DOCDB simple family (application)

US 2012045188 W 20120702; AU 2012275046 A 20120702; CA 2840747 A 20120702; CN 201280042437 A 20120702; EP 12804017 A 20120702; JP 2014519216 A 20120702; KR 20147002192 A 20120702