Battery and electrolytic solution thereof
An electrolyte and battery technology, applied in secondary batteries, secondary battery manufacturing, secondary battery parts, etc., can solve the problems of potential safety hazards, battery bulging, battery performance deterioration, etc. Attenuation, avoiding battery bulging, suppressing gas effects
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[0074] In a preferred embodiment, the battery containing the positive electrode collector can also be charged and discharged to achieve the purpose of passivating the positive electrode collector. The voltage is charged to 2.1-2.4V when charging, and the voltage is released to 1.35-2.4V when discharging. 1.45V, charge and discharge times not less than 1.
[0075] In a specific embodiment, when preparing the positive electrode, in addition to the positive electrode active material, depending on the actual situation, it may be necessary to add a positive electrode conductive agent and a positive electrode binder to improve the performance of the positive electrode.
[0076] The positive electrode conductive agent is selected from one or more of conductive polymers, activated carbon, graphene, carbon black, graphite, carbon fibers, metal fibers, metal powders, and metal flakes.
[0077] The positive electrode binder can be selected from polyethylene oxide, polypropylene oxide, po...
Embodiment 1
[0097] Weigh a certain quality of zinc sulfate and lithium sulfate, add water and stir to dissolve, then add a certain amount of boric acid, and configure the concentration of zinc sulfate to be 2mol / L, the concentration of lithium sulfate to be 1mol / L, and the mass percentage of boric acid to be 2%. of electrolyte. The obtained electrolyte solution is denoted as A1.
Embodiment 2
[0099] The difference from Example 1 is that the mass percentage of boric acid is 1%, and the other parts are the same as in Example 1. Obtained electrolyte, denoted as A2.
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