Claims
- 1. An electrolyte membrane comprising a solid acid of the general form: (MxM′1−x)3H3x(PO4)2, where M is any alkali or transition metal or other functional group having a +1 charge M′ is any alkaline earth or transition metal having a +2 charge, and X is less than or equal to 1.
- 2. An electrolyte membrane comprising a solid acid of the general form: M′3H2x[(P1−x,Ax)O4]2, where M′ is any alkaline earth or transition metal having a +2 charge, A is one of either Si or Ge, and X is less than or equal to 1.
- 3. An electrolyte membrane comprising a solid acid of the general form: MH1+x(PO3A)1−x(PO4)x, where M is any alkali or transition metal or other functional group having a +1 charge, A is one of either F or H, and X is less than or equal to 1.
- 4. An electrolyte membrane comprising a solid acid of the general form: M3Hx[(PO3A)x(PO4)x]2, where M is any alkali or transition metal or other functional group having a +1 charge, and A is one of either F or H.
- 5. An electrolyte membrane comprising a solid acid of the general form: MH1+x(CrO4)1−x(PO4)x or M3Hx[(CrO4)x(PO4)1−x]2, where M is any alkali or transition metal or other functional group having a +1 charge, and X is less than or equal to 1.
- 6. An electrolyte membrane comprising a solid acid of the general form: MHx(P1−xAx)F6, where M is any alkali or transition metal or other functional group having a +1 charge, A is one of either Si or Ge, and X is less than or equal to 1.
- 7. An electrolyte membrane comprising a solid acid of the general form: MxM′yHzAlF6, where M is any alkali or transition metal or other functional group having a +1 charge, M′ is any alkaline earth or transition metal having a +2 charge, and X, Y, and Z are each independently numbers less than three according to the relationship:
- 8. An electrolyte membrane comprising a solid acid selected from the group consisting of: (M1−xHx)3AlF6, MH2AlF6, M′HAlF6, and M2HAlF6, where M is a species with a +1 charge, M′ is a species with a +2 charge, and X is less than or equal to 1.
- 9. An electrolyte membrane comprising a solid acid of the general form: (M1−yHy)2+x(Al1−xAlx)F6, where M is any alkali or transition metal or other functional group having a +1 charge, A is one of either Si or Ge, and X and Y are each separately less than or equal to 1.
- 10. An electrolyte membrane comprising a solid acid of the general form: (M1−yHy)1+2x(P1−xAlx)F6, where M is any alkali or transition metal or other functional group having a +1 charge, and X and Y are each separately less than or equal to 1.
- 11. An electrolyte membrane comprising a solid acid of the general form: (M1−xM′x)(A1−xAlx)F6, where M is any alkali or transition metal or other functional group having a +1 charge, where M′ is any alkaline earth or transition metal having a +2 charge, A is one of either Si or Ge, and X is less than or equal to 1.
- 12. An electrolyte membrane comprising a solid acid of the general form: (M1−x)HxAO4, where M is any alkali or transition metal or other functional group having a +1 charge, A is one of either Si or Ge, and X is less than or equal to 1.
- 13. An electrolyte membrane comprising a solid acid of the general form: M′H2AO4, where M′ is any alkaline earth or transition metal having a +2 charge and A is one of either Si or Ge.
- 14. An electrolyte membrane comprising a solid acid of the general form: M″HAO4, where M″ is any alkaline earth metal or transition metal having a +3 charge and A is one of either Si or Ge.
- 15. An electrolyte membrane comprising a solid acid of the general form: MM′HAO4, where, where M is any alkali or transition metal or other functional group having a +1 charge, M′ is any alkaline earth metal or transition metal having a +2 charge, and A is one of either Si or Ge.
- 16. The electrolyte membrane as described in any of claims 1, 3 to 12 and 15, wherein M is selected from the group consisting of:. Li, Na, K, Rb, Cs, Fr, and NH4
- 17. The electrolyte membrane as described in any of claims 1, 2, 7, 8, 11, 13, and 15, wherein M′ is selected from the group consisting of: Be, Mg, Ca, Sr, Ba, Ra, and Pb.
- 18. The electrolyte membrane as described in claim 14, wherein M″ is selected from the group consisting of: Sc, Y, La, Nd, Sm, Eu, Gd, Tb, Dy, Ho, Er, Tm, Yb and Lu.
- 19. The electrolyte membrane as described in any of claims 1 to 15, further comprising a structural binder material.
- 20. The electrolyte membrane as described in claim 19, wherein the structural binder material is a species selected from the group consisting of: graphite, polymers, ceramics, glasses, and metals.
- 21. The electrolyte membrane as described in any of claims 1 to 15, further comprising a separate conducting material.
- 22. The electrolyte material as described in claim 21, wherein the conducting material is selected from the group consisting of: conducting polymer, metals and graphite.
- 23. The electrolyte material as described in any of claims 1 to 15, wherein said solid acid includes at least one variable valence element.
- 24. The electrolyte material as described in any of claims 1 to 15, wherein said electrolyte is water insoluble.
- 25. The electrolyte material as described in any of claims 1 to 15, wherein said electrolyte is thermally stable at temperatures above 100° C.
- 26. The electrolyte material as described in any of claims 1 to 15, wherein said electrolyte conducts protons.
- 27. The electrolyte material as described in any of claims 1 to 15, wherein said electrolyte has a proton conductivity of about 10−5 Ω−1 cm−1 or higher at the temperature of utilization.
- 28. The electrolyte material as described in any of claims 1 to 15, wherein said electrolyte conducts both protons and electrons.
- 29. An electrochemical device incorporating the solid acid electrolyte material described in any of claims 1 to 15.
- 30. The electrochemical device as described in claim 29, wherein the device is selected from the group consisting of: fuel cells, batteries, hydrogen separation membranes, and membrane reactors.
- 31. A method of producing a solid acid electrolyte material comprising conducting a synthesis reaction of a conventional alkali containing silicate or germanate wherein one of either the alkali ion or alkaline earth ion containing reactants is replaced with a reactant containing at least one large cation.
- 32. A method of producing a solid acid electrolyte material comprising the steps of:
providing a conventional alkali containing silicate or germanate; and conducting an ion exchange to replace one of either the alkali ion or alkaline earth ion with at least one large cation.
- 33. A method of producing a solid acid electrolyte material comprising the steps of:
providing a conventional Li containing silicate or germanate; and conducting an ion exchange reaction in an acid media to replace the Li with at least one proton.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of U.S. application Ser. No. 09/439,377, filed Nov. 15, 1999, which claims priority to U.S. Provisional Application No. 60/116,741, filed Jan. 22, 1999; No. 60/146,946, filed Aug. 2, 1999; and No. 60/151,811, filed Aug. 30, 1999 the disclosures of which are fully incorporated herein by reference.
STATEMENT AS TO FEDERALLY SPONSORED RESEARCH
[0002] The invention described herein was made in performance of work under contracts to the National Science Foundation [DMR-9902882] and the Office of Naval Research [N00014-01-1-0304 and N00014-02-1-0192], and is subject to the provisions of Public Law 96-517 (U.S.C. 202) in which the Contractor has elected to retain title.
Provisional Applications (3)
|
Number |
Date |
Country |
|
60116741 |
Jan 1999 |
US |
|
60146946 |
Aug 1999 |
US |
|
60151811 |
Aug 1999 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09439377 |
Nov 1999 |
US |
Child |
10211882 |
Aug 2002 |
US |