Method for producing carrier for electrode catalyst, precursor of carrier for electrode catalyst, and carrier for electrode catalyst, comprising same
US-12057587-B2 · Aug 6, 2024 · US
US11552318B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11552318-B2 |
| Application number | US-202117475781-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 15, 2021 |
| Priority date | Nov 30, 2020 |
| Publication date | Jan 10, 2023 |
| Grant date | Jan 10, 2023 |
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A method of manufacturing an Electricity-Generating Assembly (EGA) includes: preparing an electrolyte membrane including a central portion and a peripheral portion; providing a contact member to the peripheral portion of the electrolyte membrane; providing at least one of a first Gas Diffusion Electrode (GDE) including a reaction portion of a first Gas Diffusion Layer (GDL) and a first electrode layer or a second GDE including a reaction portion of a second GDL and a second electrode layer, on at least one central portion of the first surface of the electrolyte membrane or the second surface of the electrolyte membrane; and providing a gas diffusion portion of a respective GDL among the first and second GDLs on the contact member.
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What is claimed is: 1. A method of manufacturing an electricity-generating assembly (EGA), which comprises an electrolyte membrane, a first electrode disposed on a first surface of the electrolyte membrane, a first gas diffusion layer (GDL) disposed on the first electrode, a second electrode disposed on a second surface of the electrolyte membrane, and a second GDL disposed on the second electrode, the method comprising: preparing the electrolyte membrane including a central portion and a peripheral portion laterally extending from the central portion; providing a contact member to the peripheral portion of the electrolyte membrane; providing at least one of a first gas diffusion electrode (GDE) including a reaction portion of the first GDL and a first electrode layer or a second GDE including a reaction portion of the second GDL and a second electrode layer, on at least one central portion of the first surface of the electrolyte membrane or the second surface of the electrolyte membrane so that one of the first GDL and the second GDL comes into contact with a lateral surface of the contact member; and providing a gas diffusion portion of a respective GDL among the first and second GDLs on the contact member so that the gas diffusion portion comes into contact with a lateral surface of the reaction portion of the respective GDL. 2. The method of claim 1 , wherein the preparing the electrolyte membrane includes providing the first electrode to the central portion of the first surface of the electrolyte membrane, the providing the at least one of the first GDE includes providing the second GDE, including the second electrode and the reaction portion of the second GDL, on the central portion of the second surface of the electrolyte membrane, and the providing the gas diffusion portion includes: providing the gas diffusion portion of the second GDL on the contact member so that the gas diffusion portion comes into contact with the lateral surface of the reaction portion of the second GDL; and providing the first GDL on the first electrode. 3. The method of claim 2 , wherein the contact member is disposed to the peripheral portion of the second surface of the electrolyte membrane, or is disposed on both the peripheral portion of the second surface of the electrolyte membrane and the peripheral portion of the first surface of the electrolyte membrane in contact with a lateral surface of the first electrode. 4. The method of claim 2 , wherein the contact member includes one or more selected from the group consisting of a sub-gasket and an adhesive sheet. 5. The method of claim 2 , wherein the providing the second GDE includes providing the second GDE by pressing with 0.5 to 5 MPa. 6. The method of claim 2 , wherein the providing the gas diffusion portion of the second GDL includes providing the gas diffusion portion of the second GDL by pressing with 0.5 to 5 MPa. 7. The method of claim 5 , wherein the gas diffusion portion of the second GDL has a thickness equal to a thickness of a reaction portion of the second GDL after the pressing. 8. The method of claim 2 , wherein the reaction portion of the second GDL has less roughness or fewer pores than the gas diffusion portion of the second GDL. 9. The method of claim 2 , wherein the first GDL has a thickness smaller than or equal to a thickness of the second GDL. 10. The method of claim 2 , wherein the first GDL includes pores fewer than or equal to pores in the second GDL. 11. The method of claim 1 , comprising: preparing the electrolyte membrane including the central portion and the peripheral portion laterally extending from the central portion; providing the contact member to the peripheral portion of the electrolyte membrane; providing the first GDE, including the reaction portion of the first GDL and the first electrode layer, on the central portion of the first surface of the electrolyte membrane so that the first GDE comes into contact with the lateral surface of the contact member, and providing the second GDE, including the reaction portion of the second GDL and the second electrode layer, on the central portion of the second surface of the electrolyte membrane so that the second GDE comes into contact with the lateral surface of the contact member; and providing the gas diffusion portion of the first GDL on the contact member so that the gas diffusion portion comes into contact with the lateral surface of the reaction portion of the first GDL, and providing the gas diffusion portion of the second GDL on the contact member so that the gas diffusion portion comes into contact with the lateral surface of the reaction portion of the second GDL. 12. The method of claim 11 , wherein the contact member is provided to both the peripheral portion of the first surface of the electrolyte membrane and the peripheral portion of the second surface of the electrolyte membrane. 13. The method of claim 11 , wherein the contact member includes one or more selected from the group consisting of a sub-gasket and an adhesive sheet. 14. The method of claim 11 , wherein the providing the first GDE and the second GDE includes providing the first GDE and the second GDE by pressing with 0.5 to 5 MPa. 15. The method of claim 11 , wherein the providing the gas diffusion portion includes providing the gas diffusion portion of the first GDL and the gas diffusion portion of the second GDL by pressing with 0.5 to 5 MPa. 16. The method of claim 14 , wherein the gas diffusion portion of the first GDL has a thickness equal to a thickness of the reaction portion of the first GDL after the pressing and so that the gas diffusion portion of the second GDL has a thickness equal to a thickness of the reaction portion of the second GDL after the providing the first GDE and the second GDE by pressing. 17. The method of claim 11 , wherein the reaction portion of the first GDL has less roughness and fewer pores than the gas diffusion portion of the first GDL, and the reaction portion of the second GDL has less roughness and fewer pores than the gas diffusion portion of the second GDL. 18. The method of claim 11 , wherein the first GDL has a thickness smaller than or equal to a thickness of the second GDL. 19. The method of claim 11 , wherein the first GDL includes a number of pores fewer than or equal to a number of pores in the second GDL.
characterised by membrane-electrode assemblies [MEA] (H01M8/12 takes precedence) · CPC title
Electrolytic membranes · CPC title
of gaseous reactants · CPC title
Gas diffusion layers · CPC title
Processes of manufacture · CPC title
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