IP Library Granted Patent US 8,574,789
Granted Patent B2
US 8,574,789 · App. 11/564,510 · Granted Nov 5, 2013

Dendritic metal nanostructures for fuel cells and other applications

Inventors: John A. Shelnutt (Tijeras, NM); Wen Li (Ypsilanti, MI); Yujiang Song (Albuquerque, NM); Michael A. Hickner (Albuquerque, NM)
Assignees: Toyota Motor Engineering & Manufacturing North America, Inc.; Sandia Corporation
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Quick Facts
Patent No.
US 8,574,789
App. No.
11/564,510
Granted
Nov 5, 2013
Kind
B2
Abstract

Embodiment of the present invention relate to dendrimers useful for application as catalysts, in particular as improved electrocatalysts for polymer electrolyte membrane fuel cells (PEM-FCs). Methods of preparing such catalysts are described. Examples include dendritic nanostructured metal catalysts, such as platinum and platinum-alloy catalysts.

Claims (38)

1. A membrane-electrode assembly (MEA) comprising:

a first electrode;

a second electrode;

an ion-conducting membrane located between the first electrode and the second electrode,

the first electrode including dendritic nanostructures which act as an electrocatalyst during operation of the membrane-electrode assembly,

the dendritic structures being dendritic nanosheets, the dendritic nanosheets being generally disk-shaped.

2. The membrane-electrode assembly of claim 1 , wherein the dendritic nanostructures comprise a transition metal.

3. The membrane-electrode assembly of claim 1 , wherein the catalyst comprises a plurality of metal dendrimers.

4. The membrane-electrode assembly of claim 3 , wherein the first electrode comprises an electron-conducting material, at least some of the metal dendrimers being supported on the electron-conducting material.

5. The membrane-electrode assembly of claim 4 , wherein the electron-conducting material includes graphitic carbon.

6. The membrane-electrode assembly of claim 1 , wherein the ion-conducting membrane is a polymer electrolyte membrane.

7. A fuel cell including the membrane-electrode assembly of claim 1 .

8. The membrane-electrode assembly (MEA) of claim 1 , wherein the dendritic nanostructures are partially fused together to define a catalytic porous sheet including the dendritic nanostructures.

9. The membrane-electrode assembly of claim 1 , the dendritic nanostructures including platinum.

10. A fuel cell, comprising:

a first electrode;

a second electrode; and

an electrolyte located between the first electrode and the second electrode,

the first electrode including an electron-conducting material and a catalyst,

the catalyst including dendritic structures, the dendritic structures being metal dendrimers including platinum, the dendritic structures having branched arms,

the dendritic structures being dendritic nanosheets, the dendritic nanosheets being generally disk-shaped nanosheets.

11. The fuel cell of claim 10 , the dendritic structures being partially fused together to form a catalytic porous sheet,

the catalytic porous sheet including pores having pore diameters in a range 1 nm-10 nm.

12. The fuel cell of claim 11 , the catalytic porous sheet including pores having pore diameters in a range 2 nm-5 nm.

13. The fuel cell of claim 10 , at least some of the metal dendrimers having a single crystal structure.

14. The fuel cell of claim 10 , the carbon being graphitic carbon.

15. The fuel cell of claim 10 , the electrolyte being an ion-conducting membrane.

16. The fuel cell of claim 15 , wherein the ion-conducting membrane is a polymer electrolyte membrane.

17. The membrane-electrode assembly (MEA) of claim 1 , the dendritic structures being formed by seeding on metal nanoparticles.

18. The fuel cell of claim 10 , the dendritic structures being formed by seeding on metal nanoparticles.

19. The membrane-electrode assembly of claim 1 , wherein the generally disk-shaped dendritic nanosheets define a diameter between 1 nm and 1000 nm, and a thickness between 1 nm and 10 nm.

20. The membrane-electrode assembly of claim 19 , wherein the generally disk-shaped dendritic nanosheets define a diameter between 30 nm and 500 nm.

21. The membrane-electrode assembly of claim 1 , wherein the dendritic structures include branched arms.

22. The membrane-electrode assembly of claim 1 , wherein at least some of the dendritic structures are disposed directly on carbon within the first electrode.

23. The fuel cell of claim 10 , wherein the generally disk-shaped dendritic nanosheets define a diameter between 1 nm and 1000 nm, and a thickness between 1 nm and 10 nm.

24. The fuel cell of claim 23 , wherein the generally disk-shaped dendritic nanosheets define a diameter between 30 nm and 500 nm.

25. The fuel cell of claim 10 , wherein the dendritic structures include branched arms.

26. The fuel cell of claim 10 , wherein at least some of the dendritic structures are disposed directly on carbon within the first electrode.

Assignments (6)
CHANGE OF NAME Recorded May 22, 2018
From: SANDIA CORPORATION
To: NATIONAL TECHNOLOGY & ENGINEERING SOLUTIONS OF SANDIA, LLC
Reel/Frame 046204/0454 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 9, 2013
From: TOYOTA MOTOR ENGINEERING & MANUFACTURING NORTH AMERICA, INC.
To: TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 031738/0614 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE PREVIOUSLY RECORDED ON REEL 019217 FRAME 0996. ASSIGNOR(S) HEREBY CONFIRMS THE CORRECT NAME OF THE ASSIGNEE IS TOYOTA MOTOR ENGINEERING & MANUFACTURING NORTH AMERICA, INC.. Recorded Sep 21, 2007
From: LI, WEN
To: TOYOTA MOTOR ENGINEERING & MANUFACTURING NORTH AMERICA, INC.
Reel/Frame 019863/0052 →
CONFIRMATORY LICENSE Recorded Aug 29, 2007
From: SANDIA CORPORATION
To: ENERGY, U.S. DEPARTMENT OF
Reel/Frame 019766/0039 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 26, 2007
From: SHELNUTT, JOHN A.; SONG, YUJIANG; HICKNER, MICHAEL A.
To: SANDIA CORPORATION, OPERATOR OF SANDIA NATIONAL LABORATORIES
Reel/Frame 019483/0147 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 26, 2007
From: LI, WEN
To: TOYOTA ENGINEERING & MANUFACTURING NORTH AMERICA, INC.
Reel/Frame 019217/0996 →
Continuity (5)
Continuation In Part 10887535 · Jul 8, 2004
Continuation In Part 11329853 · Jan 11, 2006
Provisional Application 60788003 · Mar 31, 2006
Provisional Application 60643283 · Jan 12, 2005
Related Publication 20070231674A1 · Oct 4, 2007