IP Library › Granted Patent US 12,355,087
Granted Patent B2
US 12,355,087 · App. 17/774,699 · Granted Jul 8, 2025

Electrochemical oxygen reduction catalyst

Inventors: Masafumi Asahi (Ikeda, JP); Shin-Ichi Yamazaki (Ikeda, JP)
Assignee: NATIONAL INSTITUTE OF ADVANCED INDUSTRIAL SCIENCE AND TECHNOLOGY
H01M4/9058H01M4/9008H01M4/9083H01M12/06H01M2004/8689
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Quick Facts
Patent No.
US 12,355,087
App. No.
17/774,699
Granted
Jul 8, 2025
Kind
B2
Abstract

Provided is an electrochemical oxygen reduction catalyst comprising platinum-containing nanoparticles and at least one member selected from the group consisting of a specific polymer containing a melamine compound as a monomer and a specific melamine compound, the electrochemical oxygen reduction catalyst having not only high oxygen reduction activity (low overvoltage), but also high durability at 70 to 85° C., which are practical temperature conditions.

Claims (28)

1. An electrochemical oxygen reduction catalyst comprising platinum-containing nanoparticles and at least one member selected from the group consisting of a polymer containing a melamine compound as a monomer and a thiol melamine compound;

the polymer containing a melamine compound as a monomer being a polymer having a repeating unit represented by formula (1):

wherein

R 8 , R 9 , R 10 , and R 11 are the same or different, and represent hydrogen, hydroxy, halogen, substituted or unsubstituted alkyl, substituted or unsubstituted alkenyl, or substituted or unsubstituted aryl, and

R 12 represents substituted or unsubstituted alkylene, substituted or unsubstituted alkenylene, substituted or unsubstituted cycloalkylene, or substituted or unsubstituted arylene, with the proviso that when none of R 8 , R 9 , R 10 , and R 11 is substituted with sulfonic acid or a derivative group of formula —SO 3 M, wherein M is an alkali metal or NH 4 , R 12 represents substituted or unsubstituted arylene; and

the thiol melamine compound being a thiol melamine compound represented by formula (2):

wherein

R 1 , R 2 , R 3 , R 4 , R 5 , and R 6 are the same or different, and represent hydrogen, hydroxy, halogen, substituted or unsubstituted alkyl, substituted or unsubstituted alkenyl, or substituted or unsubstituted aryl, and

R 7 represents substituted or unsubstituted alkylene, substituted or unsubstituted alkenylene, substituted or unsubstituted cycloalkylene, or substituted or unsubstituted arylene.

2. The electrochemical oxygen reduction catalyst according to claim 1 , wherein at least one member selected from the group consisting of the polymer containing a melamine compound as a monomer and the thiol melamine compound is supported on the platinum-containing nanoparticles.

3. The electrochemical oxygen reduction catalyst according to claim 2 , wherein 10 to 80% of the electrochemical active surface area (ECSA) of the platinum-containing nanoparticles, which is evaluated from the electricity amount resulting from hydrogen desorption from the platinum surface, is covered with at least one member selected from the group consisting of the polymer containing a melamine compound as a monomer and the thiol melamine compound.

4. The electrochemical oxygen reduction catalyst according to claim 1 , wherein the polymer containing a melamine compound as a monomer is a polymer having a repeating unit represented by formula (1A):

wherein

R 8 , R 9 , R 10 , and R 11 are the same or different, and represent hydrogen, hydroxy, halogen, substituted or unsubstituted alkyl, substituted or unsubstituted alkenyl, or substituted or unsubstituted aryl, and

R 12a represents substituted or unsubstituted arylene; or by formula (1B):

wherein

R 8a , R 9a , R 10a , and R 11a are the same or different, and represent hydrogen, hydroxy, halogen, substituted or unsubstituted alkyl, substituted or unsubstituted alkenyl, or substituted or unsubstituted aryl, with the proviso that when at least one of R 8a , R 9a , R 10a and R 11a is substituted with sulfonic acid or a derivative group of formula —SO 3 M, wherein M is an alkali metal or NH 4 , R 12 represents substituted or unsubstituted alkylene, substituted or unsubstituted alkenylene, substituted or unsubstituted cycloalkylene, or substituted or unsubstituted arylene.

5. The electrochemical oxygen reduction catalyst according to claim 4 , wherein in formula (1A), all of R 8 , R 9 , R 10 , and R 11 are hydrogen.

6. The electrochemical oxygen reduction catalyst according to claim 4 , wherein in formula (1B), at least one of R 8a , R 9a , R 10a , and R 11a is alkyl substituted with sulfonic acid or a derivative group of formula —SO 3 M, wherein M is an alkali metal or NH 4 , and the others are hydrogen.

7. The electrochemical oxygen reduction catalyst according to claim 4 , wherein in formula (1B), R 12 is substituted or unsubstituted alkylene.

8. The electrochemical oxygen reduction catalyst according to claim 1 , wherein in formula (2), all of R 1 , R 2 , R 3 , R 4 , R 5 , and R 6 are hydrogen.

9. The electrochemical oxygen reduction catalyst according to claim 1 , wherein in formula (2), R 7 is substituted or unsubstituted alkylene.

10. The electrochemical oxygen reduction catalyst according to claim 1 , which is supported on a conductive carrier.

11. The electrochemical oxygen reduction catalyst according to claim 10 , wherein the conductive carrier is a carbonaceous material.

12. The electrochemical oxygen reduction catalyst according to claim 1 , which is a cathode catalyst for fuel cells.

13. An air electrode for fuel cells or metal-air batteries, using the electrochemical oxygen reduction catalyst according to claim 1 .

14. A fuel cell using the air electrode according to claim 13 as a cathode.

15. A metal-air battery using the air electrode according to claim 13 as a cathode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 5, 2022
From: ASAHI, MASAFUMI; YAMAZAKI, SHIN-ICHI
To: NATIONAL INSTITUTE OF ADVANCED INDUSTRIAL SCIENCE AND TECHNOLOGY
Reel/Frame 059830/0537 →
Priority Claims (1)
JP 2019-203430 · Nov 8, 2019 · national
Continuity (1)
Related Publication 20220416258A1 · Dec 29, 2022
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