MEMBRANE AND PROCESS
A reinforced ion-conducting membrane comprises a planar reinforcing component which comprises a porous polymer material; an ion-conducting component embedded in at least a region of the planar reinforcing component, which ion-conducting component comprises an ion-conducting polymer material; and linking groups which are chemically bonded to both the planar reinforcing component and the ion-conducting component. The reinforced ion-conducting membrane is useful as the membrane in a membrane-electrode assembly for example as used in fuel cells.
1 . A process for the production of a reinforced ion-conducting membrane comprising
a planar reinforcing component which comprises a porous polymer material; an ion-conducting component embedded in at least a region of the planar reinforcing component, which ion-conducting component comprises an ion-conducting polymer material; and
linking groups derived from a coupling agent, wherein the linking groups are chemically bonded to the planar reinforcing component via covalent bonds or via ionic bonds, and wherein the linking groups are chemically bonded to the ion-conducting component via covalent bonds or via ionic bonds, said process comprising the steps of:
(i) reacting the planar reinforcing component with the coupling agent to form a modified reinforcing component in which the linking groups are covalently or ionically bonded to the planar reinforcing component;
(ii) impregnating at least a region of the modified reinforcing component with the ion-conducting component, thereby covalently or ionically bonding the linking groups to the ion-conducting component; and
(iii) drying the impregnated modified reinforcing component.
2 . The process according to claim 1 wherein the porous polymer material is a porous fluoropolymer material.
3 . The process according to claim 2 wherein the porous fluoropolymer material is ePTFE.
4 . The process according to 1 wherein the ion-conducting polymer material is a partly fluorinated or perfluorinated proton-conducting polymer.
5 . The process according to claim 4 wherein the ion-conducting polymer material is perfluorosulfonic acid polymer (PFSA).
6 . The process according to claim 1 wherein step (i) is carried out by exposing the planar reinforcing component to a plasma discharge in the presence of the coupling agent.
7 . The process according to claim 6 wherein the plasma discharge is generated from a precursor plasma gas selected from hydrogen, argon, oxygen, nitrogen or mixtures thereof.
8 . The process according to claim 7 wherein the precursor plasma gas is hydrogen.
9 . The process according to claim 1 wherein the coupling agent comprises a nitrogen containing moiety.
10 . The process according to claim 9 wherein the coupling agent is selected from ammonia, amine compounds, aminosilanes or mixtures thereof.
11 . The process according to claim 10 wherein the coupling agent is selected from ammonia, allyl amine, trimethoxyaminopropyl silane and dihydroimidazole silane or mixtures thereof.
12 . The process according to claim 1 wherein step (iii) is carried out at a temperature of 60-120° C.
13 . The process according to claim 1 wherein step (iii) is followed by (iv) subjecting the dried impregnated modified reinforcing component to high temperature treatment.
14 . The process according to claim 13 wherein step (iv) is carried out at a temperature in the range 150 to 220° C.