Claims
- 1. An electrode device, comprising:
a substrate; a first electrode on the substrate, said first electrode comprising multiple metal layers including at least one layer of a first metal and at least one layer of a second metal; a second electrode on the substrate in a location discrete from said first electrode.
- 2. The electrode device of claim 1, wherein said layers each have a thickness in the range of about 50 to about 1000 Angstroms.
- 3. The electrode device of claim 1, wherein said first metal and said second metal have a Fermi level difference of at least about 0.5.
- 4. The electrode device of claim 1, wherein said first electrode further includes a barrier layer, and wherein at least a portion of said multiple layers are positioned between said barrier layer and said substrate.
- 5. The electrode device of claim 1, wherein said first metal is palladium.
- 6. The electrode device of claim 5, wherein layer of palladium has a thickness in the range of about 50 to about 1000 Angstroms.
- 7. The electrode device of claim 6, wherein said first electrode has at least 5 metal layers, said metal layers including at least two layers of palladium.
- 8. The electrode device of claim 1, wherein said substrate is substantially planar.
- 9. The electrode device of claim 1, wherein said substrate comprises a concave surface, and wherein said first electrode is positioned upon said concave surface.
- 10. The electrode device of claim 1, wherein said substrate is non-conductive.
- 11. The electrode device of claim 10, wherein said substrate comprises glass or ceramic.
- 12. The electrode device of claim 1, wherein said metal layers are formed by sputtering and/or plasma deposition.
- 13. The electrode device of claim 12, wherein said first metal and said second metal have a Fermi level difference of at least about 0.5.
- 14. The electrode device of claim 13, wherein said first metal is palladium.
- 15. A cell device, comprising:
a source of ions of hydrogen or an isotope thereof; an electrically conductive element including a metal in which said ions are soluble; and said cell configured to cause electro-migration of said ions so as to form a region within said conductive element enriched with said ions.
- 16. The cell device of claim 15, wherein said conductive element comprises multiple metal layers.
- 17. The cell device of claim 16, wherein said multiple metal layers include at least one layer of a first metal and at least one layer of a second metal.
- 18. The cell device of claim 15, also comprising a barrier layer configured to promote formation of said enriched region of said conductive element.
- 19. The cell device of claim 15, wherein said source of ions comprises a liquid electrolyte.
- 20. The cell device of claim 15, wherein said source of ions is a solid.
- 21. The cell device of claim 20, wherein said source of ions comprises a metal hydride.
- 22. The cell device of claim 19, wherein said conductive element comprises at least one layer of a first metal adjacent to at least one layer of a second metal.
- 23. The cell device of claim 22, wherein said first metal is palladium.
- 24. The cell device of claim 21, wherein said conductive element comprises at least one layer of a first metal adjacent to at least one layer of a second metal.
- 25. A device suitable for energy conversion, comprising:
at least one electrode device of claim 1; and at least one thermoelectric converter element.
- 26. The device of claim 25, comprising a plurality of said electrode devices.
- 27. The device of claim 26, comprising a plurality of thermoelectric converter elements.
- 28. The device of claim 26, wherein said electrode devices are substantially planar.
- 29. The device of claim 28, also comprising a plurality of thermoelectric converter elements, said electrode devices and thermoelectric converter elements arranged in an alternating fashion.
- 30. A device suitable for energy conversion, comprising:
at least one device of claim 15; and at least one thermoelectric converter element.
- 31. A cell device, comprising:
a solid source of ions of hydrogen or an isotope thereof; a conductive element in which said ions are soluble; said solid source arranged to provide said ions into said conductive element upon the application of current through said conductive element.
- 32. The cell device of claim 31, wherein said conductive element includes multiple metal layers.
- 33. The cell device of claim 32, wherein said multiple metal layers include a layer of a first metal adjacent to a layer of a second metal.
- 34. The cell device of claim 33, wherein said first metal and said second metal have a Fermi level difference of at least about 0.5.
- 35. The cell device of claim 31, wherein said solid source comprises a metal hydride.
- 36. The cell device of claim 35, also comprising a catalyst for converting gaseous hydrogen or an isotope thereof to a corresponding ionic hydrogen or an isotope thereof.
- 37. The cell device of claim 36, wherein said catalyst comprises platinum black.
- 38. The cell device of claim 31, comprising:
a closed container having an interior; and said solid source and said conductive element located in said interior.
- 39. The cell device of claim 38, wherein said solid source and said conductive element are formed as layers corresponding in shape to an internal surface of said container.
- 40. The cell device of claim 39, wherein said container is generally cylindrical in shape.
- 41. The cell device of claim 40, comprising:
said conductive element formed as a layer having a generally cylindrical shape; an anodic connection to said conductive element at a first location; a cathodic connection to said conductive element at a second location; said solid source formed as a layer having a generally cylindrical shape; a barrier layer located between said anodic connection and said cathodic connection; said solid source effective to exchange said ions to and from said conductive element on either side of said barrier layer, but not through said barrier layer.
- 42. The device of claim 41, also comprising a thermoelectric converter element in heat-exchange relationship with said conductive element and with said container.
- 43. The device of claim 42, also comprising heat transfer elements external of said container.
REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. patent application Ser. No. 60/184,962 filed Feb. 25, 2000, and of U.S. patent application Ser. No. 60/267,616 filed Feb. 9, 2001, each of which is hereby incorporated by reference in its entirety.
PCT Information
| Filing Document |
Filing Date |
Country |
Kind |
| PCT/US01/06042 |
2/26/2001 |
WO |
|