Claims
- 1. An ionically conductive bilayer solid electrolyte for use in a solid state electrochemical cell wherein the electrolyte layers are adjoining and wherein one of the electrolyte layers is for contact with the anode of the cell, and the other electrolyte layer is for contact with the cathode of the cell and wherein the electrolyte layer for contact with the anode is at least one member of the group consisting of LiI, LiN and a lithium substituted beta alumina and wherein the adjoining electrolyte layer for contact with the cathode of the cell is a solid solution of Li.sub.3.6 Ge.sub.0.6 V.sub.0.4 O.sub.4 having a composition of Li.sub.3 VO.sub.4 ranging from 0 to 100 percent.
- 2. An ionically conductive bilayer solid electrolyte for use in a solid state electrochemical cell wherein the electrolyte layers are adjoining and wherein one of the electrolyte layers is for contact with the anode of the cell, and the other electrolyte layer is for contact with the cathode of the cell and wherein the electrolyte layer for contact with the anode is at least one member of the group consisting of LiI, LiN and a lithium substituted beta alumina and wherein the adjoining electrolyte layer for contact with the cathode of the cell is a solid solution of Li.sub.3.6 Ge.sub.0.6 V.sub.0.4 O.sub.4 having a composition of Li.sub.3 VO.sub.4 ranging from 0 to 100 percent and where the bilayer electrolyte is LiI and Li.sub.3.6 Ge.sub.0.6 V.sub.0.4 O.sub.4.
- 3. A solid state electrochemical cell including an anode, a cathode spaced from said anode, and an ionically conductive bilayer solid electrolyte in the space between said anode and cathode, wherein the electrolyte layers are adjoining and wherein one of the electrolyte layers is in contact with the anode of the cell and the adjoining electrolyte layer is in contact with the cathode of the cell and wherein the anode is at least one member of the group consisting of Li, Na, K, Rb, Cs, Fr, LiAl, LiSi, LiB, and LiC.sub.6, wherein the cathode is at least one member of the group consisting of LiNiO.sub.2, LiMnO.sub.2, LiFeO.sub.2, MnO.sub.2, MoO.sub.3, V.sub.6 O.sub.13, V.sub.2 O.sub.5, PbO.sub.2, Ag.sub.2 O, Cr.sub.3 O.sub.8, Cr.sub.2 O.sub.5, VO.sub.2, CuO, TiO.sub.2, TiS.sub.2, MoS.sub.3, TiS.sub.3, VS.sub.2, V.sub.2 S.sub.5, MoS.sub.2, CoS.sub.2, CrS.sub.2, ZrS.sub.2, HfS.sub.2, NbS.sub.2, WS.sub.3 TaS.sub.2, VSe.sub.2, NbSe.sub.3, TfSe.sub.2, CuF.sub.2, CaCl.sub.2, NiF.sub.2, CoF.sub.2, CoCl.sub.2, NiCl.sub.2, FeCl.sub.3, and CF.sub.x, and wherein the bilayer electrolyte is adjoining layers of LiI and a solid solution of Li.sub.3 VO.sub.4 ranging from 0 to 100% and represented as Li.sub.3.6 Ge.sub.0.6 V.sub.0.4 O.sub.4.
- 4. A solid state electrochemical cell including an anode, a cathode spaced from said anode, and an ionically conductive bilayer solid electrolyte in the space between said anode and cathode, wherein the electrolyte layers are adjoining and wherein one of the electrolyte layers is in contact with the anode of the cell and the adjoining electrolyte layer is in contact with the cathode of the cell and wherein the anode is at least one member of the group consisting of LiNiO.sub.2, LiMnO.sub.2, LiFeO.sub.2, MnO.sub.2, MoO.sub.3, V.sub.6 O.sub.13, V.sub.2 O.sub.5, PbO.sub.2, Ag.sub.2 O, Cr.sub.3 O.sub.8, Cr.sub.2 O.sub.5, VO.sub.2, CuO, TiO.sub.2, TiS.sub.2, MoS.sub.3, TiS.sub.3, VS.sub.2, V.sub.2 S.sub.6, MoS.sub.2 CoS.sub.2, CrS.sub.2, ZrS.sub.2, HfS.sub.2, NbS.sub.2, WS.sub.3, TaS.sub.2, VSe.sub.2, NbSe.sub.3, TiSe.sub.2, CuF.sub.2, CaCl.sub.2, NiF.sub.2 CoF.sub.2, CoCl.sub.2, NiCl.sub.2, FeCl.sub.3, and CF.sub.x, and wherein the bilayer electrolyte is adjoining layers of LiI and a solid solution of Li.sub.3 VO.sub.4 ranging from 0 to 100% and represented as Li.sub.3.6 Ge.sub.0.6 V.sub.0.4 O.sub.4 and wherein the electrochemical cell includes lithium as the anode, LiCoO.sub.2 as the cathode, and a bilayer electrolyte of LiI and Li.sub.3.6 Ge.sub.0.6 V.sub.0.4 O.sub.4.
- 5. A solid state electrochemical cell including an anode, a cathode spaced from said anode, and an ionically conductive bilayer solid electrolyte in the space between said anode and cathode, wherein the electrolyte layers are adjoining and wherein one of the electrolyte layers is in contact with the anode of the cell and the adjoining electrolyte layer is in contact with the cathode of the cell, wherein the anode is at least one member of the group consisting of Li, Na, K, Rb, Cs, Fr, LiAl, LiSi, LiB, and LiC.sub.6, wherein the cathode is at least one member of the group consisting of LiNiO.sub.2, LiMnO.sub.2, LiFeO.sub.2, MnO.sub.2, MoO.sub.3 V.sub.6 O.sub.13, V.sub.2 O.sub.5, PbO.sub.2, Ag.sub.2 O, Cr.sub.3 O.sub.8, Cr.sub.2 O.sub.5, VO.sub.2, CuO, TiO.sub.2, TiS.sub.2, MoS.sub.3, TiS.sub.3, VS.sub.2, V.sub.2 S.sub.5, MoS.sub.2, CoS.sub.2, CrS.sub.2, ZrS.sub.2, HfS.sub.2, NbS.sub.2, WS.sub.3, TaS.sub.2, VSe.sub.2, NbSe.sub.3 , TiSe.sub.2, CuF.sub.2, CaCl.sub.2, NiF.sub.2, CoF.sub.2, CoCl.sub.2, NiCl.sub.2, FeCl.sub.3, and CF.sub.x, and wherein the bilayer electrolyte is adjoining layers of LiI and a solid solution of Li.sub.3 VO.sub.4 ranging from 0 to 100% and represented as Li.sub.3.6 Ge.sub.0.6 V.sub.0.4 O.sub.4 including LiAl as the anode, LiCoO.sub.2 as the cathode, and a bilayer electrolyte of LiI and Li.sub.3.6 Ge.sub.0.6 V.sub.0.4 O.sub.4.
- 6. A solid state electrochemical cell including an anode, a cathode spaced from said anode, and an ionically conductive bilayer solid electrolyte in the space between said anode and cathode, wherein the electrolyte layers are adjoining and wherein one of the electrolyte layers is in contact with the anode of the cell and the adjoining electrolyte layer is in contact with the cathode of the cell, wherein the anode is at least one member of the group consisting of LiNiO.sub.2, LiMnO.sub.2, LiFeO.sub.2, MnO.sub.2, MoO.sub.3, V.sub.6 O.sub.13, V.sub.2 O.sub.5, PbO.sub.2, Ag.sub.2 O, Cr.sub.3 O.sub.8, Cr.sub.2 O.sub.5, VO.sub.2, CuO, TiO.sub.2, TiS.sub.2, MoS.sub.3, TiS.sub.3, VS.sub.2, V.sub.2 S.sub.5, MoS.sub.2, CoS.sub.2, CrS.sub.2, ZrS.sub.2, HfS.sub.2, NbS.sub.2, WS.sub.3, TaS.sub.2, VSe.sub.2, NbSe.sub.3, TiSe.sub.2, CuF.sub.2, CaCl.sub.2, NiF.sub.2, CoF.sub.2, CoCl.sub.2, NiCl.sub.2, FeCl.sub.3, and CF.sub.x, and wherein the bilayer electrolyte is adjoining layers of LiI and a solid solution of Li.sub.3 VO.sub.4 ranging from 0 to 100% and represented as Li.sub.3.6 Ge.sub.0.6 V.sub.0.4 O.sub.4 including LiC.sub.6 as the anode, LiCoO.sub.2 as the cathode, and a bilayer electrolyte of LiI and Li.sub.3.6 Ge.sub.0.6 V.sub.0.4 O.sub.4.
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 |
5059497 |
Prince et al. |
Oct 1991 |
|
Foreign Referenced Citations (2)
Number |
Date |
Country |
275356 |
Jul 1988 |
EPX |
289767 |
Nov 1988 |
JPX |