A kind of electrolytic solution and lithium ion battery
A technology of electrolyte and electrolyte salt, which is applied in the field of lithium-ion batteries, can solve the problems of affecting battery performance, easy precipitation, strong oxidation of electrolyte, etc., and achieve the effect of improving cycle performance, improving cycle performance, and facilitating dissociation
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[0067] Hereinafter, the present invention will be specifically described by way of examples, but the present invention is not limited by these examples.
reference example 1
[0068] [Reference Example 1] Synthesis of Compounds
[0069] Compound A described in the synthetic general formula
[0070] first step:
[0071]
[0072] Step two:
[0073]
[0074] Operation steps: Add 100ml of toluene to a 250ml single-necked bottle, then quantitatively add ethylene glycol (20.000g, 322.37mmol), boric acid (9.966g, 161.19mmol), and reflux for 2h under stirring. Then use a water separator to divide the water, collect about 8.7g of water, stop the reaction, cool, concentrate to remove the solvent toluene, and fully remove the excess solvent with an oil pump to obtain 21.4g of white solid B-1-I.
[0075] Add LiOH (6.76g, 161.10mmol) to a 250ml single-necked bottle, white solid B-1-I (21.4g) obtained in the previous step, toluene (200ml), water (20ml), react at 80°C for 4h, after cooling down, Toluene and water were removed in vacuo, and vacuum-dried at 70° C. for 16 h to obtain white powder B-1. The product is the target compound A.
[0076] Struct...
Embodiment 1
[0081] Through the M6S process, the positive electrode LiCoO is manufactured 2 , Negative electrode graphite soft pack cell, dried at 85°C until the water content is below 200ppm, inject the prepared electrolyte into the cell. The electrolyte composition is shown in Table 3, and the structural formula of the boron salt additive is shown in Table 1.
[0082] table 3:
[0083]
[0084]
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