Dual-ion battery
A dual-ion and battery technology, applied in the field of electrochemistry, can solve the problem that the capacity and cycle performance of anion intercalation graphite electrodes have not been effectively improved, and achieve the effects of insignificant capacity decay, improved capacity and cycle performance, and low viscosity.
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Embodiment 1
[0035]Configure a 1mol / L lithium hexafluorophosphate solution in the glove box, wherein the solvent of the solution is a mixed solvent of sulfolane and ethyl methyl carbonate, and the volume content of ethyl methyl carbonate is 30%, and the above configured solution is placed in a glove One day in the box; using the above solution as the electrolyte, a dual-ion battery was produced in the glove box, wherein the positive pole was a graphite electrode, the negative pole was a lithium sheet, and the separator was glass fiber.
Embodiment 2
[0037] Configure a 1mol / L lithium hexafluorophosphate solution in the glove box, wherein the solvent of the solution is a mixed solvent of sulfolane and ethyl methyl carbonate, and the volume content of ethyl methyl carbonate is 40%, and the above-mentioned configured solution is placed in a glove One day in the box; using the above solution as the electrolyte, a dual-ion battery was produced in the glove box, wherein the positive pole was a graphite electrode, the negative pole was a lithium sheet, and the separator was glass fiber.
Embodiment 3
[0039] Configure a 1mol / L lithium hexafluorophosphate solution in the glove box, wherein the solvent of the solution is a mixed solvent of sulfolane and ethyl methyl carbonate, and the volume content of ethyl methyl carbonate is 50%, and the above-mentioned configured solution is placed in a glove One day in the box; using the above solution as the electrolyte, a dual-ion battery was produced in the glove box, wherein the positive pole was a graphite electrode, the negative pole was a lithium sheet, and the separator was glass fiber.
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