Claims
- 1. A three electrode solid state electro-chemical cell including a working electrode, a reference electrode, a counter electrode, and a solid state electrolyte for performing electrochemical measurements on the solid electrolyte at temperatures of about 30.degree. C. wherein the reference electrode and counter electrode is an alloy of lithium, the working electrode is a noble metal, and the solid electrolyte is a solid solution of lithium germaniumoxide and lithium vanadium oxide.
- 2. A three electrode solid state electrochemical cell including a working electrode, a reference electrode, a counter electrode, and a solid state electrolyte for performing electrochemical measurements on the solid electrolyte at temperatures of about 300.degree. C. and wherein the solid electrolyte is a solid solution of lithium germanium oxide and lithium vanadium oxide.
- 3. A three electrode solid state electrochemical cell including a working electrode, a reference electrode, a counter electrode, and a solid state electrolyte for performing electrochemical measurements on the solid electrolyte at temperatures of about 300.degree. C. and wherein the solid solution of lithium germanium oxide and lithium vanadium oxide has the formula Li.sub.3.6 Ge.sub.0.6 V.sub.0.4 O.sub.4.
- 4. A solid state cell including a three electrode arrangement of a platinum working electrode, a LiAl reference electrode, and a LiAl counter electrode for performing electrochemical measurements on a solid electrolyte, said solid state cell including a solid sintered pellet of Li.sub.3.6 Ge.sub.0.6 V.sub.0.4 O.sub.4 as the solid electrolyte, a platinum foil disc beneath said solid electrolyte, said platinum foil disc serving as the working electrode, pressed pellets of LiAl alloy atop the sintered pellet electrolyte serving as the reference electrode and the counter electrode with a small gap in the middle so that there is no contact between the reference electrode and the counter electrode, a molybdenum foil atop the reference electrode as the current collector, a molybdenum spacer atop the counter electrode and a mica insulator atop the molybdenum current collector to isolate it from the molybdenum spacer atop the counter electrode, the cell stack being placed between molybdenum plates that also act as current collectors for the counter and reference electrodes.
GOVERNMENT INTEREST
The invention described herein may be manufactured, used, and licensed by or for the Government for governmental purposes without the payment to us of any royalties thereon.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
5240790 |
Chua et al. |
Aug 1993 |
|