Fluorine-containing 5.5 V high-voltage lithium ion battery electrolyte and application thereof
A lithium-ion battery and electrolyte technology, applied in secondary batteries, secondary battery repair/maintenance, circuits, etc., can solve problems such as poor oxidation stability of electrolytes
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[0041] The present invention has no particular limitation on the preparation method of the lithium-ion battery, and the lithium-ion battery can be prepared by a conventional method in the art. Exemplarily, the lithium-ion battery of the present invention can be prepared by the preparation method provided in WO2017128989A1. The present invention The following exemplarily provides a method for preparing a lithium ion battery, which should not be understood by those skilled in the art as limiting the present invention.
[0042] Preferably, the lithium ion battery further includes a separator.
[0043] More preferably, the separator is at least one selected from polypropylene separators.
[0044] According to a particularly preferred embodiment, said membrane is Celgarde 2400.
[0045] Compared with the prior art, the present invention has the advantages of:
[0046] (1) The present invention prevents the electrolytic solution from being oxidized in a large amount at a higher wo...
Embodiment 1
[0062] The present embodiment provides a kind of method for preparing lithium-ion battery electrolyte, and this method comprises:
[0063] (1) In a glove box filled with argon (water content and oxygen content are both less than 0.01ppm), fluoroethylene carbonate, propylene carbonate and dimethyl carbonate are mixed uniformly according to the volume ratio of 2:2:6, Obtain the first mixed solution;
[0064] (2) adding lithium hexafluorophosphate to the first mixed solution obtained above to obtain a solution in which the concentration of lithium hexafluorophosphate is 1mol / L;
[0065] (3) adding lithium difluorooxalate borate to the aforementioned lithium hexafluorophosphate solution to obtain lithium ion battery electrolyte S1; wherein, in lithium ion battery electrolyte S1, difluorooxalate lithium borate accounts for 5% of the total weight of the electrolyte, The total weight of fluoroethylene carbonate, propylene carbonate and dimethyl carbonate accounts for 84% of the tota...
Embodiment 2
[0067] The present embodiment provides a kind of method for preparing lithium-ion battery electrolyte, and this method comprises:
[0068] (1) In a glove box filled with argon (water content and oxygen content are both less than 0.01ppm), fluoroethylene carbonate, propylene carbonate and dimethyl carbonate are mixed uniformly according to the volume ratio of 2:2:6, Obtain the first mixed solution;
[0069] (2) adding lithium hexafluorophosphate to the first mixed solution obtained above to obtain a solution in which the concentration of lithium hexafluorophosphate is 1mol / L;
[0070] (3) adding lithium difluorooxalate borate to the lithium hexafluorophosphate solution obtained above to obtain lithium ion battery electrolyte S2; wherein, in lithium ion battery electrolyte S2, lithium difluorooxalate borate accounts for 1% of the total weight of the electrolyte, The total weight of fluoroethylene carbonate, propylene carbonate and dimethyl carbonate accounts for 88% of the tota...
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