A kind of ternary cathode material lithium ion battery electrolyte and ternary cathode material lithium ion battery
A technology of lithium ion battery and positive electrode material, which is applied in the field of ternary positive electrode material lithium ion battery electrolyte and ternary positive electrode material lithium ion battery, and can solve the problem that the ternary material has a large specific surface area, affects battery performance, battery cycle performance, high temperature Storage performance can not be satisfied and other problems, to achieve the effect of improving high temperature performance, good infiltration and diffusion effect, and improving long-life cycle performance
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Embodiment 1
[0046] In a glove box filled with argon (moisture 6 , and stirred until it was completely dissolved to obtain the lithium-ion battery electrolyte of Example 1.
[0047] The lithium-ion battery electrolyte prepared above is respectively injected into a soft-packed lithium-ion battery in which the positive electrode active material is nickel cobalt manganese oxide, and the negative electrode active material is graphite. Sub-encapsulation, capacity separation and other processes to obtain the ternary cathode material lithium-ion battery to be tested.
Embodiment 2
[0049] In a glove box filled with argon (moisture 6 , and stirred until it was completely dissolved to obtain the lithium-ion battery electrolyte of Example 2.
[0050] The lithium-ion battery electrolyte prepared above is respectively injected into a soft-packed lithium-ion battery in which the positive electrode active material is nickel cobalt manganese oxide, and the negative electrode active material is graphite. Sub-encapsulation, capacity separation and other processes to obtain the ternary cathode material lithium-ion battery to be tested.
Embodiment 3
[0052] In a glove box filled with argon (moisture 6 , and stirred until it was completely dissolved to obtain the lithium-ion battery electrolyte of Example 3.
[0053] The lithium-ion battery electrolyte prepared above is respectively injected into a soft-packed lithium-ion battery in which the positive electrode active material is nickel cobalt manganese oxide, and the negative electrode active material is graphite. Sub-encapsulation, capacity separation and other processes to obtain the ternary cathode material lithium-ion battery to be tested.
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