Negative plate and lithium ion battery comprising same
A technology of negative electrode sheet and negative electrode, applied in the direction of negative electrode, battery electrode, secondary battery, etc., can solve the problem that the bonding force between the negative electrode active material layer and the current collector cannot be improved, the energy density and service life of the battery can be reduced, and the electrode material can be pulverized. and other problems, to achieve the effect of light weight, buffer volume expansion, and increased liquid retention
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Embodiment 1
[0084] (1) Preparation of positive electrode sheet:
[0085] The cathode active material LiCoO 2 , the binder PVDF, and the conductive agent Super P are dissolved in N-methylpyrrolidone (NMP) according to the mass ratio of 97:1.5:1.5 and stirred evenly to make a slurry, which is evenly coated on the aluminum foil of the positive electrode current collector, and dried. After rolling, it is made into the positive electrode sheet of the lithium-ion battery;
[0086] (2) Preparation of binder in porous copper foil:
[0087] 0.95 g of PVDF and 0.05 g of PVP were mixed and dissolved in 1.2 g of NMP, and dispersed at a speed of 800 rpm for 20 minutes to obtain a binder glue solution with a solid content of 5%-10%.
[0088] (3) Preparation of active material layer slurry:
[0089] SiO 2 / C composite material (SiO 2 Accounting for 20% of the total mass of the composite, SiO 2 The particle size is 1-7μm), the conductive agent conductive carbon black Super P, the binder water-emuls...
Embodiment 2
[0099] The difference between this embodiment and embodiment 1 is:
[0100] Preparation of binder in porous copper foil: mix 0.9g of PVDF and 0.1g of PVP and dissolve in 1.2g of NMP, disperse at 800rpm for 20min, and obtain a binder with a solid content of 5%-10% liquid.
[0101] The silicon-based material adopts Si / C composite material (Si accounts for 10% of the total mass of the composite material), and the carbon-based material adopts graphene, D 50 ≤1μm; the midline of the surface density of the bottom coating is 0.00856g / cm 2 , the median line density of the top layer coating is 0.00214g / cm 2 After drying, the thickness of the carbon-based material layer on one side of the porous copper foil is 20±3μm, and the thickness of the active material layer is 80±3μm; the rolling compaction density is 1.70g / cm 3 .
Embodiment 3
[0103] The difference between this embodiment and embodiment 1 is:
[0104] Preparation of binder in porous copper foil: Dissolve 1g of PAA-Na in 1.2g of NMP, disperse at 1000rpm for 20min, and obtain a binder solution with a solid content of 5%-10%.
[0105] Silicon-based materials using SiO 2 / C composite material (SiO 2 Accounting for 20% of the total mass of the composite material), the carbon-based material is a mixed material of artificial graphite and carbon nanotube CNT, the mass ratio of artificial graphite and carbon nanotube CNT is 7:3, and the particle size of the mixed material is D 50 ≤10μm; the midline of the surface density of the bottom coating is 0.00726g / cm 2 , the median density of the top coating area is 0.00484g / cm 2 .
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