Method for supplementing lithium for negative electrode of lithium ion battery
A lithium-ion battery and negative electrode technology, which is applied in the field of lithium-ion batteries, can solve the problems of inaccurate quantitative lithium insertion, harsh environmental requirements, and high production costs, and achieve the effects of improving first-time efficiency, avoiding floating, and low cost
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Embodiment 1
[0023] Example 1: This embodiment provides a method for replenishing lithium to the negative electrode sheet of a lithium-ion battery. In a nitrogen atmosphere, spray a n-hexane solution of n-butyllithium with a concentration of 1M on the surface of the negative electrode sheet (the active material in the negative electrode sheet is graphite). , so that the lithium ions in n-butyllithium are reduced to metal lithium and intercalated in the negative electrode sheet, so that the lithium intercalation amount in the graphite is 5% of the total graphite capacity, and then the negative electrode sheet is dried to complete the lithium replenishment operation.
Embodiment 2
[0024] Example 2: This embodiment provides a method for replenishing lithium to the negative electrode sheet of a lithium ion battery. In an argon atmosphere, a n-hexane solution of tert-butyllithium with a concentration of 3M is dripped on the surface of the negative electrode sheet (the active material in the negative electrode sheet is Graphite), so that the lithium ions in the organic lithium solution are reduced to metal lithium and intercalated in the negative electrode sheet, so that the lithium intercalation amount in the graphite is 15% of the total graphite capacity, and then the negative electrode sheet is dried to complete the lithium replenishment operation.
Embodiment 3
[0025] Example 3: This example provides a method for replenishing lithium to the negative electrode of a lithium-ion battery. In a nitrogen atmosphere, add a 5M n-hexane solution of phenyllithium dropwise on the surface of the negative electrode (the active material in the negative electrode is silicon) , so that the lithium ions in the phenyllithium are reduced to metal lithium and intercalated in the negative electrode sheet, so that the lithium intercalation amount in the silicon is 0.01% of the total capacity of the silicon, and then the negative electrode sheet is dried to complete the lithium replenishment operation.
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