Invention Grant
- Patent Title: Method for in-situ synthesis of silicon nanoparticles
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Application No.: US14379677Application Date: 2013-02-20
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Publication No.: US09617396B2Publication Date: 2017-04-11
- Inventor: Chloé Schubert , Olivier Poncelet
- Applicant: Commissariat A L'Energie Atomique Et Aux Energies Alternatives
- Applicant Address: FR Paris
- Assignee: Commissariat a L'Energie Atomique et aux Energies Alternatives
- Current Assignee: Commissariat a L'Energie Atomique et aux Energies Alternatives
- Current Assignee Address: FR Paris
- Agency: Alston & Bird LLP
- Priority: FR1251606 20120222
- International Application: PCT/IB2013/051371 WO 20130220
- International Announcement: WO2013/124795 WO 20130829
- Main IPC: C08J3/215
- IPC: C08J3/215 ; H01B3/30 ; H01B3/40 ; C08K7/26 ; H01B3/42 ; C08K3/36

Abstract:
The invention relates to a method for in-situ synthesis of silicon nanoparticles in a thermosetting polymeric matrix, the thermosetting and thermoset matrices obtained in this way and a material including same. The method includes the following steps: a) forming an aqueous-phase/organic-phase inverse emulsion, wherein the aqueous phase includes at least a basic catalyst and the organic phase includes at least a non-cross-linked (co)polymer precursor chosen from an aliphatic, cycloaliphatic or aromatic epoxy resin precursor, a polyester-imide precursor, an unsaturated/epoxy polyester (co)polymer precursor, a polyether/epoxy (co)polymer precursor and a polyurethane precursor; b) introducing, into the inverse emulsion formed in step a), at least one silicon precursor forming a complete network whereof the rate of hydrolysis is greater than the cross-linking speed of the (co)polymer and c) stirring the mixture obtained in step b) and heating to a temperature between 20° C. and 70° C.
Public/Granted literature
- US20150031794A1 Method For In-Situ Synthesis Of Silicon Nanoparticles Public/Granted day:2015-01-29
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