A secondary power source, which comprises a positive electrode containing activated carbon and a lithium-containing transition metal oxide, a negative electrode containing a carbon material capable of doping and undoping lithium ions, and an organic electrolyte containing a lithium salt.
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1. A secondary power source, which comprises a positive electrode comprising activated carbon and a lithium-containing transition metal oxide, a negative electrode comprising a carbon material capable of doping and undoping lithium ions, and an organic electrolyte comprising a lithium salt, wherein
1. A secondary power source, which comprises a positive electrode comprising activated carbon and a lithium-containing transition metal oxide, a negative electrode comprising a carbon material capable of doping and undoping lithium ions, and an organic electrolyte comprising a lithium salt, wherein the lithium-containing transition metal oxide is an oxide of lithium and at least one element selected from the group consisting of Mn, Fe, Co, Ni, Zn, and W, and the lithium-containing transition metal oxide is present in the positive electrode in an amount of from 0.1 to 15 wt %. 2. The secondary power source according to claim 1, wherein the lithium-containing transition metal oxide is LixCoyNi1-yO2or LizMn2O4,wherein 02/g. 4. The secondary power source according to claim 1, wherein the activated carbon of the positive electrode is steam-activated coconut shell type activated carbon or steam-activated phenol resin type activated carbon. 5. The secondary power source according to claim 1, wherein the carbon material of the negative electrode has a spacing of [002] face of from 0.335 to 0.410 nm. 6. The secondary power source according to claim 1, wherein the carbon material of the negative electrode has a spacing of [002] face of from 0.335 to 0.338 nm. 7. The secondary power source according to claim 1, wherein the organic electrolyte comprises at least one solvent selected from the group consisting of ethylene carbonate, propylene carbonate, butylene carbonate, dimethyl carbonate, ethylmethyl carbonate, diethyl carbonate, sulfolane and dimethoxyethane. 8. The secondary power source according to claim 1, wherein the lithium salt is at least one member selected from the group consisting of LiPF6,LiBF4,LiClO4,LiN(SO2CF3)2,CF3SO3Li, LiC(SO2CF3)3,LiAsF6and LiSbF6. 9. The secondary power source according to claim 1, wherein the lithium salt is contained in an amount of from 0.1 to 2.5 mol/l in the electrolyte. 10. The secondary power source according to claim 1, wherein lithium ions are doped in the carbon material of the negative electrode by charging after the positive electrode and the negative electrode facing each other with a separator interposed therebetween, are impregnated with the electrolyte. 11. The secondary power source according to claim 1, wherein the positive electrode is one prepared by mixing and kneading polytetrafluoroethylene with a mixture comprising an activated carbon powder and a lithium-containing transition metal oxide powder, followed by forming into a sheet. 12. The secondary power source according to claim 1, wherein the positive electrode contains from 1 to 20 wt % of a binder. 13. The secondary power source according to claim 1, wherein the negative electrode is one prepared by mixing and kneading polytetrafluoroethylene with the carbon material, followed by forming into a sheet. 14. The secondary power source according to claim 1, wherein the negative electrode is one prepared by using polyvinylidene fluoride, polyamideimide or polyimide as a binder, dispersing the carbon material in a solution having a resin for the binder or its precursor dissolved in an organic solvent, coating the dispersion on a current collector, followed by heating.
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