Claims
- 1. In a solid oxide fuel cell operating at a temperature in the range of 400-700° C., the improvement comprising;
an anode including doped-ceria, an electrolyte including doped-ceria, and a cathode including cobalt iron based materials.
- 2. The improvement of claim 1, wherein said anode is composed of NiO/doped-ceria.
- 3. The improvement of claim 1, wherein said doped-ceria includes doping elements selected from the group consisting of samarium oxide, gadolinium oxide, yttria oxide, and lanthanide oxide.
- 4. The improvement of claim 1, wherein said fuel cell includes a pore former to create pores therein.
- 5. The improvement of claim 4, wherein said pore formed is selected from the group consisting of starch and carbon.
- 6. The improvement of claim 1, wherein said electrolyte comprises material selected from the group consisting of doped-ceria, doped-zirconia with a thin layer of doped-ceria, and doped-ceria/doped-zirconia.
- 7. The improvement of claim 1, wherein said electrode is selected from the group consisting of (La, Sr)(Co Fe)O3, and (La,Ca)(Co, Fe, Mn)O3.
- 8. The improvement of claim 1, wherein said doped-ceria in said electrolyte comprises colloidal spray deposited doped-ceria, or aerosol spray casting.
- 9. The improvement of claim 1, wherein said cobalt iron based material is deposited by colloidal spray deposition or aerosol spray casting.
- 10. In a method for fabricating ceria-based solid oxide fuel cells, the improvement including forming the ceria-based material by colloidal spray deposition.
- 11. The improvement of claim 1, additionally including forming an electrode of the fuel cells from a cobalt, iron, manganese based material by colloidal spray deposition.
- 12. A ceria-based solid oxide fuel cell including:
an anode containing doped-ceria, an electrolyte containing doped-ceria, an electrode containing cobalt iron based materials, and a fuel selected from the group consisting of hydrogen, methane, methanol, propane, butane and other hydrocarbons
- 13. The fuel cell of claim 12, operating in a temperature range of 400-700° C.
- 14. The fuel cell of claim 12, wherein said fuel is composed of hydrogen or methane, and wherein the operating temperature is about 550° C.
- 15. The fuel cell of claim 12, wherein said fuel is hydrogen, and wherein a power output of up to 400 mW/cm is produced at an operating temperature of 550° C.
- 16. The fuel cell of claim 12, wherein said fuel is methane, and wherein a power output of 320 mW/cm is produced at an operating temperature of 550° C.
- 17. The fuel cell of claim 12, wherein said anode comprises NiO/doped-ceria.
- 18. The fuel cell of claim 17, wherein said electrolyte additionally includes doped-zirconia.
- 19. The fuel cell of claim 18, wherein said electrode comprises (La, Sr)(Co, Fe, Mn) O3.
- 20. The fuel cell of claim 19, wherein said doped-ceria is doped with samarium oxide, yttria oxide, lanthamide oxide, or gadolinium oxide.
RELATED APPLICATION
[0001] The present invention relates to and claims priority under 35 USC 120 to Provisional Application No. 60/274200 filed Mar. 8, 2001, entitled “Ceria-Based Solid Oxide Fuel Cells”.
Government Interests
[0002] The United States Government has rights in this invention pursuant to Contract No. W-7405-ENG-48 between the United States Department of Energy and the University of California for the operation of Lawrence Livermore National Laboratory.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60274200 |
Mar 2001 |
US |