Lithium-ion battery, lithium-rich anode sheet and preparation method thereof
A lithium-ion battery and anode sheet technology, which is applied in battery electrodes, non-aqueous electrolyte battery electrodes, secondary batteries, etc. Hard and brittle, good self-discharge performance, low environmental requirements
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[0028] refer to figure 1 According to the preparation method of the lithium-rich anode sheet 1 of the lithium-ion battery of the present invention, it is used to prepare the lithium-rich anode sheet 1 of the lithium-ion battery described in the first aspect of the present invention, comprising the following steps: the active material, the conductive agent, the adhesive Mix the adhesive and solvent evenly to make a slurry, coat the slurry on the current collector 12, cold press, and dry to obtain the initial anode sheet, wherein the slurry coated on the current collector 12 becomes Diaphragm 11; control the electrolyte infiltration depth of the initial anode sheet to obtain a wet anode sheet; arrange the ion conduction electronic insulation layer and the lithium-rich source on the surface of the wet anode sheet in sequence, and then apply an external coating on the lithium-rich source and the wetted anode sheet The electric field charges it, so that the lithium on the lithium-r...
Embodiment 1
[0037] (1) Preparation of anode sheet
[0038] A preparation of the initial anode sheet
[0039] The active material graphite (the gram capacity of graphite is 340mAh / g, the first coulombic efficiency is 91%), the binder (styrene-butadiene rubber), and the conductive agent (super conductive carbon) are mixed according to the ratio of mass ratio = 92:3:5 The solvent (nitromethylpyrrolidone) is mixed evenly to form a slurry, which is coated on the current collector (copper foil) 12, and then cold-pressed and dried to form an initial anode sheet with a capacity of 1500mAh (the capacity of the battery cell before lithium supplementation) ), wherein the slurry coated on the current collector 12 is dried to form a membrane 11, the coating thickness of one side of the membrane 11 is 60 μm, and the water content does not exceed 300 ppm.
[0040] B Lithium-rich front plate preparation
[0041] Weld the lugs on the initial anode sheet, and then evenly spray the electrolyte on the surf...
Embodiment 2
[0054] With embodiment 1, except following difference with embodiment 1:
[0055] A preparation of the initial anode sheet
[0056] The active material is a mixture of graphite and silicon (wherein the gram capacity of the mixture is 400mAh / g, and the first Coulombic efficiency is 82%).
[0057] B Lithium-rich front plate preparation
[0058] The electrolyte solution wets the diaphragm 11 to a depth of 50%, that is, the penetration depth is 30 μm.
[0059] C lithium-rich process parameter settings
[0060] The lithium-rich amount of the lithium-rich anode sheet is 12% of the capacity of the initial anode sheet, then the lithium-rich capacity is:
[0061] 1500×12%=180mAh
[0062] Lithium-rich current selection: 0.1C current, that is
[0063] 1500×0.1=150mA
[0064] The charging time is: (180 / 150)×3600=4320s
[0065] That is, charge between the soaked anode sheet and the metal lithium strip, the charging current is 150mA, and the charging time is 4320s. After the charging...
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