Non-aqueous electrolytic rechargeable batteries for extended temperature range operation
A rechargeable battery is designed with cells having a specific combination of anode, cathode, and electrolyte compositions to maintain long cycle life at extreme high temperatures and deliver high power at extreme low temperatures. These properties can significantly reduce or altogether eliminate the need for thermal management circuitry, reducing weight and cost. Applications in telecommunications backup, transportation, and military defense are contemplated.
1. A rechargeable battery, comprising:
a carbon-containing negative electrode capable of intercalating and liberating lithium,
a positive electrode comprising a lithium transition metal oxoanion electroactive material,
a separator, and
a nonaqueous electrolyte solution free of γ-butyrolactone, the nonaqueous electrolyte solution comprising a lithium salt and a mixture of ethylene carbonate, propylene carbonate, ethylmethyl carbonate, diethyl carbonate, vinylene carbonate, and sulfolene,
wherein the vinylene carbonate is present at 0.2 to 8 vol % of the nonaqueous electrolyte solution, and
wherein the sulfolene is present at 0.1 to 3 weight % of the nonaqueous electrolyte solution.
2. The rechargeable battery of claim 1 , wherein the nonaqueous electrolyte solution contains 1 to 3 weight % sulfolene.
3. The rechargeable battery of claim 1 , wherein the nonaqueous electrolyte solution contains 1 to 1.5 weight % sulfolene.
4. The rechargeable battery of claim 1 , wherein the nonaqueous electrolyte solution contains 0.5 to 3 vol % vinylene carbonate.
5. The rechargeable battery of claim 1 , wherein the nonaqueous electrolyte solution contains 0.5 to 2 vol % vinylene carbonate.
6. The rechargeable battery of claim 1 , wherein the carbon-containing negative electrode comprises non-graphitizable carbon, artificial graphite, or natural graphite combinations of carbonaceous materials with silicon or silicon oxide.
7. The rechargeable battery of claim 1 , wherein a molar concentration of the lithium salt is between 0.5 and 2.0 mol/1.
8. The rechargeable battery of claim 1 , wherein the lithium salt is selected from the group consisting of LiClO 4 , LiPF 6 , LiBF 4 , LiCF 3 SO 3 , LiN(CF 3 SO 2 ) 2 , LiN(CF 3 CF 2 SO 2 ) 2 , LiN(CF 3 SO 2 )(C 4 F 9 SO 2 ) and LiC(CF 3 SO 2 ) 3 .
9. The rechargeable battery of claim 1 , wherein the nonaqueous electrolyte solution further comprises aprotic solvents.
10. The rechargeable battery of claim 9 , wherein the at least one organic solvent further comprises at least one of butylene carbonate, dimethyl carbonate, y-valerolactone, methyl acetate, methyl propionate, tetrahydrofuran, 2-methyl tetrahydrofuran, tetrahydropyran, dimethoxyethane, dimethoxymethane, ethylene methyl phosphate, ethyl ethylene phosphate, trimethyl phosphate, triethyl phosphate, a halide of any preceding organic solvent, vinyl ethylene carbonate and fluoroethylenecarbonate, poly(ethylene glycol) diacrylate, and combinations thereof.
11. The rechargeable battery of claim 1 , where the rechargeable battery is contained within a pouch.