Claims
- 1. A method of making a gas diffusion layer for an electrochemical cell comprising the steps of:
a) providing a plain-weave carbon fiber cloth; b) coating a surface of said plain-weave carbon fiber cloth with a layer comprising carbon particles and one or more highly fluorinated polymers to make a coated plain-weave carbon fiber cloth; and c) compressing said coated plain-weave carbon fiber cloth to a compression of 25% or greater; wherein said step of compressing does not include attaching said plain-weave carbon fiber cloth to another layer.
- 2. The method according to claim 1 wherein said step of compressing said coated plain-weave carbon fiber cloth comprises compressing said coated plain-weave carbon fiber cloth to a compression of 28% or greater.
- 3. The method according to claim 1 wherein said step of compressing said coated plain-weave carbon fiber cloth comprises compressing said coated plain-weave carbon fiber cloth to a compression of 40% or greater.
- 4. A gas diffusion layer for an electrochemical cell made according to the method of claim 1.
- 5. A gas diffusion layer for an electrochemical cell made according to the method of claim 3.
- 6. A membrane electrode assembly (MEA) comprising a gas diffusion layer made according to the method of claim 1 and a polymer electrolyte membrane (PEM) having a thickness of 50 microns or less.
- 7. A membrane electrode assembly (MEA) comprising a gas diffusion layer made according to the method of claim 3 and a polymer electrolyte membrane (PEM) having a thickness of 50 microns or less.
- 8. A membrane electrode assembly (MEA) comprising a gas diffusion layer made according to the method of claim 1 and a polymer electrolyte membrane (PEM) having a thickness of 35 microns or less.
- 9. A membrane electrode assembly (MEA) comprising a gas diffusion layer made according to the method of claim 3 and a polymer electrolyte membrane (PEM) having a thickness of 35 microns or less.
- 10. A membrane electrode assembly (MEA) according to claim 7 having an electrical area resistance of 400 ohm*cm2 or greater when compressed to 25% compression.
- 11. A membrane electrode assembly (MEA) according to claim 7 having an electrical area resistance of 400 ohm*cm2 or greater when compressed to 40% compression.
- 12. A membrane electrode assembly (MEA) according to claim 9 having an electrical area resistance of 400 ohm*cm2 or greater when compressed to 25% compression.
- 13. A membrane electrode assembly (MEA) according to claim 9 having an electrical area resistance of 400 ohm*cm2 or greater when compressed to 40% compression.
- 14. A membrane electrode assembly (MEA) comprising a g as diffusion layer that comprises a plain-weave carbon fiber cloth and comprising a polymer electrolyte membrane (PEM) having a thickness of 50 microns or less, wherein said membrane electrode assembly (MEA) has an electrical area resistance of 400 ohm*cm2 or greater when compressed to 25% compression.
- 15. The membrane electrode assembly (MEA) according to claim 14 having an electrical area resistance of 400 ohm*cm2 or greater when compressed to 40% compression.
- 16. The membrane electrode assembly (MEA) according to claim 14 comprising a polymer electrolyte membrane (PEM) having a thickness of 35 microns or less.
- 17. The membrane electrode assembly (MEA) according to claim 15 comprising a polymer electrolyte membrane (PEM) having a thickness of 35 microns or less.
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.