Additive for lithium ion battery electrolyte, lithium ion battery electrolyte and lithium ion battery containing electrolyte
A lithium-ion battery and electrolyte technology, which is applied in the field of lithium-ion batteries, can solve the problem that the cycle life and storage of lithium-ion batteries cannot be balanced, and achieves the effects of being suitable for industrialized promotion and application, with a simple preparation method and a controllable process.
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Embodiment 1
[0087] Electrolyte preparation: In a glove box filled with argon, ethylene carbonate, diethyl carbonate, and ethyl methyl carbonate were mixed in a mass ratio of EC:DEC:EMC=1:1:1, and then added to the mixed solution Slowly add 12.5wt% lithium hexafluorophosphate (LiPF 6), based on 1.25wt% lithium bisfluorosulfonimide (LiTFSI) based on the total weight of the electrolyte, and finally add 1.0wt% based on the total weight of the electrolyte with a compound shown in formula I, 5wt% fluoroethylene carbonate ( FEC) and 0.5wt% vinylene carbonate (VC), after stirring uniformly, the lithium-ion battery electrolyte of Example 1 is obtained.
[0088] Preparation of soft-pack battery: stack the prepared positive electrode sheet (active material lithium cobaltate), diaphragm, and negative electrode sheet (active material graphite) in order, so that the diaphragm is in the middle of the positive and negative electrode sheets, and wind up to obtain a bare cell; Put the bare cell into the a...
Embodiment 2~8
[0089] Embodiment 2~8 and comparative example 1~4
[0090] In Examples 2-8 and Comparative Examples 1-4, except that the proportions of the components of the electrolyte are added as shown in Table 1, the others are the same as in Example 1.
[0091] Referring to Table 1, Table 1 is the composition ratio of each component in the examples of the present invention and comparative examples
[0092] Table 1
[0093]
[0094]
[0095] Performance tests were performed on the lithium-ion soft-pack batteries prepared by using the electrolytes prepared in Examples 1-8 of the present invention and the lithium-ion soft-pack batteries prepared in Comparative Examples 1-4.
[0096] Relevant performance tests were carried out on the batteries and their electrolytes prepared in Examples 1-8 and Comparative Examples 1-4.
[0097] (1) High temperature cycle performance test: At 45°C, charge the divided battery to 4.40V at 0.7C constant current and constant voltage, cut-off current at 0...
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