Claims
- 1. A method of depositing a dense, high temperature electronically conductive interconnection on an electrode structure, comprising the steps:
- (a) applying a thin porous, base layer of doped LaCrO.sub.3 particles and organic polymer binder on a portion of a first surface of an electrode structure;
- (b) coating the base layer with a top layer composition selected from the group consisting of CaO+Al.sub.2 O.sub.3, SrO+Al.sub.2 O.sub.3, BaO+Al.sub.2 O.sub.3, CaO+TiO.sub.2, SrO+TiO.sub.2, BaO+TiO.sub.2, and their mixtures; and
- (c) heating the base layer and the top layer to a temperature and for a time effective to melt the top layer composition and allow it to fill any open pores in the porous base layer of doped LaCrO.sub.3.
- 2. The method of claim 1, where the LaCrO.sub.3 is doped with at least one of Ca, Ba, Sr, Co, and Mg.
- 3. The method of claim 1, where the electrode is a self supporting, tubular, axially elongated structure comprising Ca or Sr doped LaMnO.sub.3, and where, after step (a), the particles and binder are heated to remove the binder and provide a layer of doped LaCrO.sub.3 particles, which particles are further heated to firmly attach them to the electrode structure.
- 4. The method of claim 1, where the LaCrO.sub.3 is doped with Sr and Co, and where, after step (b) the LaCrO.sub.3 particles and the top layer composition are first heated to sinter the particles to the electrode structure and then to melt the top layer composition.
- 5. The method of claim 1, where the top layer composition is selected from the group consisting of (CaO).sub.12.(Al.sub.2 O.sub.3).sub.7 and Sr.sub.3 Al.sub.2 O.sub.6, and where the top layer is applied as an organic based slurry or tape and the doped LaCrO.sub.3 particles are applied as an organic based slurry or a tape.
- 6. Method of claim 1, where a solid oxide electrolyte is applied to the remaining portion of the electrode structure, which electrolyte is then substantially coated with a cermet, exterior electrode to provide an electrochemical cell.
- 7. The method of claim 6, where a plurality of the electrochemical cells are electrically connected together.
- 8. A self-supporting, gas-permeable, electrically conductive electrode having on a selected portion thereof a sintered layer of doped LaCrO.sub.3, which layer is a solid solution of doped LaCrO.sub.3 and a composition selected from the group consisting of CaO+Al.sub.2 O.sub.3, SrO+Al.sub.2 O.sub.3, BaO+Al.sub.2 O.sub.3, CaO+TiO.sub.2, SrO+TiO.sub.2, BaO+TiO.sub.2, and their mixtures; and where the remaining portion of the electrode is covered with solid oxide electrolyte, which electrolyte is substantially covered with a cermet exterior electrode.
- 9. The electrode of claim 8, where the LaCrO.sub.3 is doped with at least one of Ca, Ba, Sr, Co, and Mg, the electrode is a self supporting, axially elongated tube comprising Ca or Sr doped LaMnO.sub.3, and the composition in the solid solution is selected from the group consisting of (CaO).sub.12.(Al.sub.2 O.sub.3).sub.7 and Sr.sub.3 Al.sub.2 O.sub.6.
- 10. A plurality of the electrodes of claim 8 electrically connected together.
GOVERNMENT CONTRACT
The Government of the United States of America has rights in this invention pursuant to Contract No. DE-AC-0280-ET-17089, awarded by the U.S. Department of Energy.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
4861345 |
Bowker et al. |
Aug 1989 |
|
4895576 |
Pal et al. |
Jan 1990 |
|
5080689 |
Pal et al. |
Jan 1992 |
|