A kind of organic functionalized porous separator, preparation method and lithium ion battery
A functionalized and separator technology, applied in the direction of secondary batteries, battery components, separators/films/diaphragms/spacers, etc., can solve problems affecting the functionality of coatings, improve quality and bond The effect of excellent force and good rate performance
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Embodiment 1
[0045] A kind of organic functionalized porous separator
[0046] The coating slurry formulation on the positive electrode surface of the lithium battery on the porous separator is in dry weight percentage, and the coating slurry consists of 8wt% styrene / acrylate copolymer emulsion, 2wt% carboxymethylcellulose sodium, 90wt% poly Vinylidene fluoride consists of three parts, among which polyvinylidene fluoride is selected from hexafluoropropylene and vinylidene fluoride copolymerization high molecular polymer with a degree of copolymerization of 3% and a melting temperature of 150°C. For polyvinylidene fluoride, the average particle diameter D50 is 0.15-1.0 μm. The water-based polymer binder is selected from styrene / acrylate copolymer emulsion, and the water-based polymer thickener is selected from sodium carboxymethyl cellulose. During the preparation of the slurry, the solvent is deionized water, wherein the weight of the solid part accounts for 30wt% of the total weight of t...
Embodiment 2
[0050] The difference between embodiment 2 and embodiment 1 lies in the thickness specifications of the coating slurry on the positive electrode surface of the lithium battery on the porous separator:
[0051] Wherein, the coating slurry on the positive electrode surface of the lithium battery is used on the porous separator to coat the surface of the separator, and the coating thickness is 4 μm; then, the coating slurry on the negative electrode surface of the lithium battery is carried out on the porous separator. The other surface of the separator was coated with a coating thickness of 2 μm to obtain an organic functionalized porous separator with a total thickness of 18 μm.
[0052] The rest are the same as in Example 1, and will not be repeated here.
Embodiment 3
[0053] The difference between embodiment 3 and embodiment 1 lies in the thickness specifications of the coating slurry on the negative electrode surface of the lithium battery on the porous separator:
[0054] Wherein, use the coating slurry on the positive electrode surface of the lithium battery on the porous separator to coat the surface of the separator, and the coating thickness is 2 μm; then, use the coating slurry on the negative electrode surface of the lithium battery on the porous separator. The other surface of the separator was coated with a coating thickness of 4 μm to obtain an organic functionalized porous separator with a total thickness of 18 μm.
[0055] The rest are the same as in Example 1, and will not be repeated here.
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