Claims
- 1. A ceramic composite comprising a continuous phase of an alkali-metal-ion conductor and a continuous phase of a ceramic oxygen-ion conductor,the alkali-metal-ion conductor comprising at least one of alkali-metal-beta-alumina, alkali-metal-beta″-alumina, alkali-metal-beta-gallate, or alkali-metal-beta″-gallate, the phase of the alkali-metal-ion conductor free of sinter-formed grain boundary liquid phase.
- 2. A ceramic composite as in claim 1 wherein the alkali-metal of the alkali-metal-ion conductor comprises at least one of lithium, sodium, potassium, rubidium or caesium.
- 3. A ceramic composite as in claim 1 wherein the alkali-metal-ion conductor comprises at least one of sodium-beta″-alumina or potassium-beta″alumina.
- 4. A ceramic composite as in claim 1 wherein the alkali-metal-ion conductor comprises sodium-beta″-alumina.
- 5. A ceramic composite as in claim 1 wherein the ceramic oxygen-ion conductor comprises a ceramic comprising at least one of zirconia, ceria, hafnia, or thoria.
- 6. A ceramic composite comprising a continuous alkali-metal-ion conductor phase of at least one of alkali-metal-beta-alumina or alkali-metal-beta″-alumina and a continuous phase of a ceramic oxygen-ion conductor, the alkali-metal-ion conductor phase free of sinter-formed grain boundary liquid phase.
- 7. A ceramic composite as in claim 6 wherein the alkali-metal-of the alkali-metal-beta-alumina or alkali-metal-beta″-alumina comprises at least one of lithium, sodium, potassium, rubidium or caesium.
- 8. A ceramic composite as in claim 6 wherein the alkali metal of the alkali-metal-beta-alumina comprises at least one of sodium or potassium.
- 9. A ceramic composite comprising a continuous alkali-metal-ion conductor phase of at least one of sodium-metal-beta-alumina or sodium-metal-beta″-alumina and a continuous phase of a ceramic oxygen-ion conductor,the alkali-metal-ion conductor phase free of sinter-formed grain boundary liquid phase.
- 10. A ceramic composite as in claim 6 wherein the ceramic oxygen-ion conductor comprises a ceramic comprising at least one of zirconia, ceria, hafnia, or thoria.
- 11. A ceramic composite as in claim 6 wherein the ceramic oxygen-ion conductor comprises a ceramic comprising at least one of yttria stabilized zirconia, rare-earth-oxide-doped zirconia, scandia-doped zirconia, rare-earth oxide doped ceria alkaline-earth oxide doped ceria, stabilized hafnia, or thoria.
RELATED APPLICATIONS
This application is a continuation of U.S. patent application Ser. No. 09/636,157, filed Aug. 10, 2000, which is a continuation of U.S. patent application Ser. No. 09/002,483, filed Jan. 2, 1998, now U.S. Pat. No. 6,117,807, issued Sep. 12, 2000, which are hereby incorporated by reference.
US Referenced Citations (8)
Non-Patent Literature Citations (4)
Entry |
Youngblood, et al., “Sintering Processes and Heat Treatment Schedules for Conductive, Lithia-Stablized Al2O3”, Bull. AM. Ceram. Soc., 1997, 56, 206 (no month). |
Battles, “Materials for Advanced High Temperature Secondary Batteries” International Materials REviews, 34, 1 (no date). |
Aichun Tan, et al. “in “Formation and characterization of Na-”-alumina single crystal films” Solid State Ionics 1993, 67 (no month). |
Grosbie, et al. “Potassium Beta″-Alumina Membranes” Journal of the American Ceramic Society, 65, 187 (no date). |
Continuations (2)
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Number |
Date |
Country |
Parent |
09/636157 |
Aug 2000 |
US |
Child |
10/308652 |
|
US |
Parent |
09/002483 |
Jan 1998 |
US |
Child |
09/636157 |
|
US |