A kind of non-aqueous electrolytic solution and lithium ion battery using the electrolytic solution
A non-aqueous electrolyte and electrolyte technology, which is applied in the direction of secondary batteries, circuits, electrical components, etc., can solve the problems of poor high-temperature performance of batteries, and achieve the effect of improving low-temperature cycle performance and rate performance
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Embodiment 1
[0082] Electrolyte preparation: In an argon atmosphere glove box with a water content 6 Dissolved in the above non-aqueous solvents to form LiPF 6 Basic electrolyte with a concentration of 1mol / L. Then, add LiBF to the base electrolyte 4 and triphenylphosphonic acid cyclic anhydride, the mass fractions of the two in the electrolyte are 0.2% and 1%, respectively.
[0083] The preparation of the lithium-ion battery is the same as in Comparative Example 1, and will not be repeated here.
Embodiment 2
[0085] Electrolyte preparation: In an argon atmosphere glove box with a water content 6Dissolved in the above non-aqueous solvents to form LiPF 6 Basic electrolyte with a concentration of 1mol / L. Then, add LiBF to the base electrolyte 4 and tripropylphosphonic acid cyclic anhydride, the mass fractions of the two in the electrolyte are 0.2% and 1%, respectively.
[0086] The preparation of the lithium-ion battery is the same as in Comparative Example 1, and will not be repeated here.
Embodiment 3
[0088] Electrolyte preparation: In an argon atmosphere glove box with a water content 6 Dissolved in the above non-aqueous solvents to form LiPF 6 Basic electrolyte with a concentration of 1mol / L. Then, add LiBF to the base electrolyte 4 and triethylphosphonic acid cyclic anhydride, the mass fractions of the two in the electrolyte are 0.2% and 1%, respectively.
[0089] The preparation of the lithium-ion battery is the same as in Comparative Example 1, and will not be repeated here.
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