IP Library Granted Patent US 10,991,965
Granted Patent B2
US 10,991,965 · App. 15/751,373 · Granted Apr 27, 2021

Membrane electrode assembly for a fuel cell, and fuel cell

Inventors: Lasse Schmidt (Wolfsburg, DE); Martin Göbel (Heilbronn, DE); Miriam Stiefel (Meinersen, DE); Julian Ronnenberg (Vordorf, DE)
Assignees: Volkswagen AG; Audi AG
H01M8/1004H01M4/8807H01M8/0234H01M8/241H01M4/8605H01M4/8636H01M2008/1095
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Quick Facts
Patent No.
US 10,991,965
App. No.
15/751,373
Granted
Apr 27, 2021
Kind
B2
Abstract

The invention relates to a membrane electrode assembly ( 15 ) for a fuel cell ( 10 ), comprising a membrane ( 11 ) on each side of which is disposed a catalytic layer ( 12, 13 ), and on this a gas diffusion layer ( 30 ). It is provided that the gas diffusion layer ( 30 ) comprises a layer with electrically conductive particles ( 35 ), and a portion of the particles ( 35 ) is arranged directly adjacent to the catalytic layer ( 12, 13 ).

Claims (31)

1. A membrane electrode assembly for a fuel cell, comprising:

a membrane;

a first catalytic layer positioned on a first surface of the membrane and a second catalytic layer positioned on a second surface of the membrane opposite to the first surface of the membrane; and

a first gas diffusion layer positioned on the first catalytic layer and a second gas diffusion layer positioned on the second catalytic layer,

wherein each of the first and second gas diffusion layers include electrically conductive particles, a portion of the particles of each of the first and second gas diffusion layers positioned immediately adjacent to the respective catalytic layer, and

wherein the particles have different particle sizes that differ from one another by between 100 and 500 μm.

2. The membrane electrode assembly according to claim 1 , wherein the electrically conductive particles have an average particle size in the range of 10 to 1000 μm.

3. The membrane electrode assembly according to claim 1 , wherein the particles comprise at least two batches of particles, each batch of particles has a respective average particle size, and the at least two average particle sizes differ from one another.

4. The membrane electrode assembly according to claim 1 , wherein the particles are arranged to have a gradient of the particle sizes which runs perpendicular to the first and second surfaces of the membrane.

5. The membrane electrode assembly according to claim 1 , wherein the average particle size changes incrementally in a direction towards the membrane.

6. The membrane electrode assembly according to claim 1 , wherein the average particle size of the particles decreases in the direction towards the membrane.

7. The membrane electrode assembly according to claim 1 , wherein the particles include a graphite powder.

8. The membrane electrode assembly according to claim 1 , wherein the first gas diffusion layer has a cover layer on a surface facing away from the membrane.

9. A fuel cell comprising a membrane electrode assembly including:

a membrane;

a first catalytic layer positioned on a first surface of the membrane and a second catalytic layer positioned on a second surface of the membrane opposite to the first surface of the membrane; and

a first gas diffusion layer positioned on the first catalytic layer and a second gas diffusion layer positioned on the second catalytic layer,

wherein each of the first and second gas diffusion layers include electrically conductive particles, a portion of the particles of each of the first and second gas diffusion layers positioned immediately adjacent to the respective catalytic layer, and

wherein the particles have different particle sizes that differ from one another by between 100 and 500 μm.

10. The fuel cell according to claim 9 , wherein the particles comprise at least two batches of particles, each batch of particles has a respective average particle size, and the at least two average particle sizes differ from one another.

11. The fuel cell according to claim 9 , wherein the average particle size changes incrementally in a direction towards the membrane.

12. The fuel cell according to claim 9 , wherein the average particle size of the particles decreases in the direction towards the membrane.

13. The fuel cell according to claim 9 , wherein the particles include a graphite powder.

14. The fuel cell according to claim 9 , wherein the first gas diffusion layer has a cover layer on a surface facing away from the membrane.

15. A method of fabricating a membrane electrode assembly for a fuel cell, comprising:

positioning a first catalytic layer on a first surface of a membrane and a second catalytic layer on a second surface of the membrane opposite to the first surface of the membrane; and

positioning a first gas diffusion layer on the first catalytic layer and a second gas diffusion layer on the second catalytic layer,

wherein each of the first and second gas diffusion layers include electrically conductive particles, a portion of the particles of each of the first and second gas diffusion layers positioned immediately adjacent to the respective catalytic layer, and

wherein the particles have particle sizes that differ from one another by between 100 and 500 μm.

16. The method according to claim 15 wherein the particles have an average particle size between 10 and 1000 μm.

17. The method according to claim 15 wherein the particles of the first gas diffusion layer are positioned so that a gradient exists in the size of the particles in a direction extending perpendicular to the first surface of the membrane.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 3, 2019
From: VOLKSWAGEN AG
To: AUDI AG
Reel/Frame 049349/0944 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 24, 2018
From: SCHMIDT, LASSE; STIEFEL, MIRIAM
To: VOLKSWAGEN AG
Reel/Frame 045626/0267 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 24, 2018
From: RONNENBERG, JULIAN
To: VOLKSWAGEN AG
Reel/Frame 045626/0272 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 24, 2018
From: GÖBEL, MARTIN
To: VOLKSWAGEN AG
Reel/Frame 045626/0277 →
Priority Claims (1)
DE 10 2015 215 381.9 · Aug 12, 2015 · national
Continuity (1)
Related Publication 20180233758A1 · Aug 16, 2018