A kind of positive electrode of lithium ion battery and preparation method thereof
A lithium-ion battery and positive electrode technology, applied in battery electrodes, battery components, circuits, etc., can solve the problems of low mechanical strength, limited film size, low film production efficiency, etc., to reduce quality, improve energy density, The effect of high film production efficiency
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Embodiment 1
[0029] The preparation of the positive electrode of the button battery: The glass substrate (20cm×20cm) and the glass rod are sprayed with a volume fraction of 30% alcohol aqueous solution, and the macrotube continuum generated from the reactor mouth is pulled to the square glass substrate with the glass rod. A carbon nanotube film with a thickness of about 10 μm will be obtained on the glass substrate in the form of vertical and horizontal warp and weft meshes. The active material (LiCoO 2 ), conductive agent (Super-P) and binder (polyvinylidene fluoride) are mixed with NMP in the ratio of 90:4:6 (solid content is kept at 45%), put into a ball mill for ball milling for 10h, and the speed is 232rmin -1 , to obtain a positive electrode slurry. Keep the blade edge of the scraper at 180 μm, spread a layer of slurry evenly on the film, and put it in an oven at 120°C for 40min. Subsequently, the glass substrate carrying the coating carbon nanotube film layer was placed flat, and ...
Embodiment 2
[0031] Preparation of the positive electrode of the monolithic laminated battery: The glass substrate (20cm×36cm) and the glass rod were sprayed with a volume fraction of 30% alcohol aqueous solution, and the macrotube continuum generated from the reactor mouth was pulled by the glass rod onto the square glass substrate . A carbon nanotube film with a thickness of about 13 μm will be obtained on the glass substrate in the form of vertical and horizontal warp and weft meshes. The active material (LiCoO 2 ), conductive agent (Super-P) and binder (polyvinylidene fluoride) are mixed with NMP in the ratio of 90:4:6 (solid content 45%), put into a ball mill for ball milling for 12h, and the speed is 232rmin -1 , to obtain a positive electrode slurry. The method of "moving the film with a knife" is adopted, that is, the glass plate carrying the film does not move, and the scraper moves over the film with a 230 μm knife edge, and the positive electrode slurry is coated on the carbon...
Embodiment 3
[0033] Preparation of the positive electrode of the multi-layered battery: The glass substrate (20cm×36cm) and the glass rod are sprayed with a volume fraction of 30% alcohol aqueous solution, and the macroscopic tube continuum generated from the reactor mouth is pulled by the glass rod onto the square glass substrate. . A carbon nanotube film with a thickness of about 13 μm will be obtained on the glass substrate in the form of vertical and horizontal warp and weft meshes. The active material (LiCoO 2 ), conductive agent (Super-P) and binder (polyvinylidene fluoride) are mixed with NMP in the ratio of 90:4:6 (solid content 45%), put into a ball mill for ball milling for 12h, and the speed is 248rmin -1 , to obtain a positive electrode slurry. Using the method of "moving the film by moving the knife", the scraper is moved over the film with a 230μm knife edge, and the positive electrode slurry is coated on the carbon nanotube film. The size of each coating is 8cm×18cm, and t...
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