IP Library Granted Patent US 7,220,514
Granted Patent B2
US 7,220,514 · App. 10/335,958 · Granted May 22, 2007

Polymer electrolyte fuel cell

Assignee: Matsushita Electric Industrial Co., Ltd.
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Quick Facts
Patent No.
US 7,220,514
App. No.
10/335,958
Granted
May 22, 2007
Kind
B2
Abstract

In a polymer electrolyte fuel cell including a hydrogen ion conductive polymer electrolyte membrane; a pair of electrodes composed of catalyst layers sandwiching the hydrogen ion conductive polymer electrolyte membrane between them and gas diffusion layers in contact with the catalyst layers; a conductive separator plate having a gas flow channel for supplying a fuel gas to one of the electrodes; and a conductive separator plate having a gas flow channel for supplying an oxidant gas to the other electrode, in order to bring a hydrogen ion conductive polymer electrolyte and a catalyst metal of the catalyst layers containing the hydrogen ion conductive polymer electrolyte and conductive carbon particles carrying the catalyst metal sufficiently and uniformly into contact with each other, the polymer electrolyte is provided in pores of an agglomerate structure of the conductive carbon particles. Consequently, the reaction area inside the electrodes is increased, and higher performance is exhibited.

Claims (22)

1. A polymer electrolyte fuel cell comprising:

a hydrogen ion conductive polymer electrolyte membrane;

a pair of electrodes which have catalyst layers sandwiching said hydrogen ion conductive polymer electrolyte membrane therebetween and gas diffusion layers in contact with said catalyst layers;

a conductive separator plate having a gas flow channel for supplying a fuel gas to one of said electrodes; and

a conductive separator plate having a gas flow channel for supplying an oxidant gas to the other electrode, characterized in that said catalyst layers comprise a hydrogen ion conductive polymer electrolyte and conductive carbon particles carrying a catalyst metal, and the hydrogen ion conductive polymer electrolyte is provided in pores of an agglomerate structure of the conductive carbon particles,

wherein the diameter of the hydrogen ion conductive polymer electrolyte is not smaller than 5 nm and not greater than 40 nm, and

wherein the polymer electrolyte is in the form of particles.

2. The polymer electrolyte fuel cell as set forth in claim 1 , wherein the pores of the agglomerate structure of the conductive carbon particles are not smaller than 5 nm and not greater than 100 nm.

3. The polymer electrolyte fuel cell as set forth in claim 1 , wherein the hydrogen ion conductive polymer electrolyte is provided in pores of primary particles of the conductive carbon particles.

4. The polymer electrolyte fuel cell as set forth in claim 3 , wherein the pores of the primary particles of the conductive carbon particles are not smaller than 1 nm and not greater than 10 nm.

5. The polymer electrolyte fuel cell as set forth in claim 1 , wherein the hydrogen ion conductive polymer electrolyte is not less than 10,000 and not more than 500,000 in molecular weight.

6. The polymer electrolyte fuel cell as set forth in claim 1 , wherein the hydrogen ion conductive polymer electrolyte has a main chain polymerization degree of not less than 10 and not more than 500.

7. The polymer electrolyte fuel cell as set forth in claim 1 , wherein the catalyst particles are present as particles of not smaller than 0.5 nm and not greater than 5 nm on surfaces of the carbon particles, near a hydrogen ion conducting channel present inside a layer of the hydrogen ion conductive polymer electrolyte.

8. The polymer electrolyte fuel cell as set forth in claim 1 , wherein said catalyst layer is composed of a plurality of layers which are discontinuous in a thickness direction.

9. The polymer electrolyte fuel cell as set forth in claim 8 , wherein said catalyst layer comprises a first catalyst layer in contact with said hydrogen ion conductive polymer electrolyte membrane and a second catalyst layer formed on said first catalyst layer, a catalyst component of said first catalyst layer is platinum, and catalyst components of said second catalyst layer are platinum and at least one metal selected from the group consisting of ruthenium, palladium, rhodium, nickel, iridium and iron.

10. A polymer electrolyte fuel cell comprising:

a hydrogen ion conductive polymer electrolyte membrane;

a pair of electrodes which comprise catalyst layers sandwiching said hydrogen ion conductive polymer electrolyte membrane therebetween and gas diffusion layers in contact with said catalyst layers;

a conductive separator plate having a gas flow channel for supplying a fuel gas to one of said electrodes; and

a conductive separator plate having a gas flow channel for supplying an oxidant gas to the other electrode, characterized in that said catalyst layers comprise a hydrogen ion conductive polymer electrolyte and carbon particles carrying a catalyst metal, and the hydrogen ion conductive polymer electrolyte is provided in pores of primary particles of the carbon particles,

wherein the pores of the primary particles of the conductive carbon particles are not smaller than 1 nm and not greater than 10 nm, and

wherein the polymer electrolyte is in the form of particles.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 20, 2003
From: YASUMOTO, EIICHI; YOSHIDA, AKIHIKO; UCHIDA, MAKOTO; GYOTEN, HISAAKI; HATOH, KAZUHITO; SUGAWARA, YASUSHI; MORITA, JUNJI; KANBARA, TERUHISA; TAKEBE, YASUO; HOSAKA, MASATO; NIIKURA, JUNJI
To: MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
Reel/Frame 014415/0155 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 24, 2003
From: YASUMOTO, EIICHI; YOSHIDA, AKIHIKO; UCHIDA, MAKOTO; GYOTEN, HISAAKI; HATOH, KAZUHITO; SUGAWARA, YASUSHI; MORITA, JUNJI; KANBARA, TERUHISA; TAKEBE, YASUO; HOSAKA, MASATO; NIIKURA, JUNJI
To: MATSUSHITA ELECTRIC INDUSTRIAL CO., LTD.
Reel/Frame 013878/0281 →
Priority Claims (4)
JP 2000-200656 · Jul 3, 2000 · national
JP 2000-204633 · Jul 6, 2000 · national
JP 2000-204719 · Jul 6, 2000 · national
WO PCT/JP01/05684 · Jun 29, 2001 · international
Continuity (1)
Related Publication 20040131919A1 · Jul 8, 2004