Claims
- 1. An aqueous coating composition comprising carbon particles, one or more highly fluorinated polymers and one or more amine oxide surfactants.
- 2. The composition according to claim 1 wherein said amine oxide surfactants have a decomposition temperature of less than 200° C.
- 3. The composition according to claim 1 wherein said amine oxide surfactants are alkyl dimethylamine oxides according to formula II:
- 4. The composition according to claim 3 wherein said amine oxide surfactants have a decomposition temperature of less than 200° C.
- 5. The composition according to claim 1 wherein said amine oxide surfactants are alkyl dimethylamine oxides according to formula I:
- 6. The composition according to claim 5 wherein said amine oxide surfactants have a decomposition temperature of less than 200° C.
- 7. The composition according to claim 5 wherein n is 11 to 15.
- 8. The composition according to claim 7 comprising:
1-50% by weight carbon particles; 0.1-15% by weight highly fluorinated polymers; and 0.1-15% by weight amine oxide surfactant.
- 9. The composition of claim 1 wherein said highly fluorinated polymers have a sintering temperature and wherein said amine oxide surfactants have a decomposition temperature which is lower than said sintering temperature by at least 5° C.
- 10. A method of making a gas diffusion layer for an electrochemical cell comprising the steps of:
a) coating a electrically conductive porous substrate with the aqueous coating composition according to claim 1; and b) heating the electrically conductive porous substrate to a temperature sufficient to decompose said amine oxide surfactants.
- 11. The method according to claim 10 wherein said electrically conductive porous substrate comprises carbon fiber.
- 12. The method according to claim 10 wherein said highly fluorinated polymers have a sintering temperature and wherein said amine oxide surfactants have a decomposition temperature which is lower than said sintering temperature by at least 5° C.
- 13. The method according to claim 10 wherein said step of heating the electrically conductive porous substrate comprises heating the electrically conductive porous substrate to a temperature sufficient to sinter said highly fluorinated polymers.
- 14. The method according to claim 12 wherein said step of heating the electrically conductive porous substrate comprises heating the electrically conductive porous substrate to a temperature sufficient to sinter said highly fluorinated polymers.
- 15. A gas diffusion layer for an electrochemical cell made according to the method of claim 10.
- 16. A gas diffusion layer for an electrochemical cell according to claim 15 which comprises essentially no surfactant.
- 17. A membrane electrode assembly for an electrochemical cell comprising the gas diffusion layer according to claim 15.
- 18. A membrane electrode assembly for an electrochemical cell comprising the gas diffusion layer according to claim 16.
Government Interests
[0001] This invention was made with Government support under Cooperative Agreement DE-FC02-99EE50582 awarded by DOE. The Government has certain rights in this invention.