Invention Grant
- Patent Title: Membrane
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Application No.: US15329850Application Date: 2015-08-04
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Publication No.: US10777833B2Publication Date: 2020-09-15
- Inventor: Deborah Jones , Jacques Roziere , Sara Cavaliere , Surya Subianto , Sarah Burton
- Applicant: Johnson Matthey Fuel Cells Limited , Centre National de la Recherche Scientifique , Universite de Montpellier
- Applicant Address: GB London FR Paris FR Montpellier
- Assignee: Johnson Matthey Fuel Cells Limited,Centre National de la Recherche Scientifique,Universite de Montpellier
- Current Assignee: Johnson Matthey Fuel Cells Limited,Centre National de la Recherche Scientifique,Universite de Montpellier
- Current Assignee Address: GB London FR Paris FR Montpellier
- Agency: BakerHostetler
- Priority: com.zzzhc.datahub.patent.etl.us.BibliographicData$PriorityClaim@44643ea2
- International Application: PCT/GB2015/052253 WO 20150804
- International Announcement: WO2016/020668 WO 20160211
- Main IPC: H01M8/00
- IPC: H01M8/00 ; H01M8/106 ; H01M8/1039 ; H01M8/1044 ; H01M8/1023 ; H01M8/1062 ; B01D67/00 ; B01D69/12 ; H01M8/0289 ; B01J39/19 ; B01J39/20 ; C08J5/22 ; C08L27/12 ; C08L79/04 ; C25B13/08 ; H01M8/103 ; H01M8/1032 ; H01M8/1018 ; B01D71/62 ; B01D69/02 ; B01D71/32

Abstract:
An electrolyte membrane including (i) a porous mat of nanofibres, wherein the nanofibres are composed of a non-ionically conducting heterocyclic-based polymer, the heterocyclic-based polymer comprising basic functional groups and being soluble in organic solvent; and (ii) an ion-conducting polymer which is a partially- or fully-fluorinated sulphonic acid polymer. The porous mat is essentially fully impregnated with ion-conducting polymer, and the thickness of the porous mat in the electrolyte membrane is distributed across at least 80% of the thickness of the electrolyte membrane. Such a membrane is of use in a proton exchange membrane fuel cell or an electrolyser.
Public/Granted literature
- US20170279142A1 MEMBRANE Public/Granted day:2017-09-28
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