Lithium ion battery, cathode sheet thereof, cathode material and preparation process
A technology for lithium-ion batteries and negative electrode materials, applied in battery electrodes, circuits, electrical components, etc., can solve problems such as increased electrolyte costs, inconsistent discharge platforms, and increased costs
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experiment example 1
[0096] Take active material graphite 3000g, SP 18.75g, LLTO 6.25g (mass ratio is 0.2%) and CMC37.5g and stir at low speed for 30min, add 2000g deionized water for pre-stirring and then stir at medium speed for 1h, then add 1023.5g of deionized water While stirring at high speed for 3 hours, finally add 140g of SBR and continue stirring for 30 minutes to obtain the experimental slurry with a viscosity of 2500-3000mpa.s.
[0097] The positive electrode slurry is based on the mass ratio of LiFePO 4 : SP: CNT: PVDF = 95: 1.0: 1.0: 3.0, add materials in sequence, continue stirring for 5-6 hours, and finally obtain a slurry of 6000-8000mpa.s.
[0098] Filter the positive and negative electrode slurry obtained above, and prepare a 4Ah pouch battery through processes such as coating, rolling, punching, and lamination.
[0099] After vacuum baking at 90°C for 20h to 30h, control the moisture content of the electrode sheet at 100-500ppm, and then inject 22-26g of commercially available...
experiment example 2
[0102] The parameters for the preparation of the pouch battery are the same as in Example 1 except for 12.5 g of SP and 12.5 g of LLTO (mass ratio: 0.4%).
experiment example 3
[0104] The parameters for the preparation of the pouch battery are the same as those in Example 1 except for the material SP 9.38g and LLTO 15.63g (mass ratio 0.5%).
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