Silicon-carbon composite material for lithium ion battery and preparation method thereof
A technology of silicon-carbon composite materials and lithium-ion batteries, which is applied in the direction of battery electrodes, circuits, electrical components, etc., can solve the problems of not fully reflecting the high capacity of silicon-based materials, achieve improved cycle performance, prevent pulverization, and improve cycle performance. performance effect
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Embodiment 1
[0013] 1. Pour 0.2kg sodium carboxymethyl cellulose and 20L water into a blender, and stir at high speed for 2 hours to obtain sodium carboxymethyl cellulose glue.
[0014] 2. Pour the glue solution into a mechanical high-energy ball mill, and at the same time put 8kg of spherical artificial graphite with a particle size of D50=11-13μm and a purity of 99.96%, and 2kg of silicon powder with a particle size of D50=4-5μm and a purity of 99.99%. The softening point of 0.1kg is The low-temperature asphalt at 80°C is poured into a mechanical high-energy ball mill, and ball milled for about 3 hours under the protection of an argon atmosphere, and the particle size of the material is detected to be below 100nm.
[0015] 3. Put the ball-milled slurry into a centrifugal spray dryer, spray dry and granulate by centrifugal spraying at 150°C, and test the particle size and specific surface area of the particles. The particle size is D50=15-19μm, and the specific surface area is below 4m2 / ...
Embodiment 2
[0037] 1. Pour 0.2kg sodium carboxymethyl cellulose and 20L water into a blender, and stir at high speed for 2 hours to obtain sodium carboxymethyl cellulose glue.
[0038] 2. Pour the glue into a mechanical high-energy ball mill, and at the same time put 6kg of spherical artificial graphite with a particle size of D50=11-13μm and a purity of 99.95%, and 4kg of silicon powder with a particle size of D50=4-5μm and a purity of 99.99%. The softening point of 0.1kg is The low-temperature asphalt at 80°C is poured into a mechanical high-energy ball mill, and ball milled for about 3 hours under the protection of an argon atmosphere, and the particle size of the material is detected to be below 100nm.
[0039] 3. Put the ball-milled slurry into a centrifugal spray dryer, spray dry and granulate by centrifugal spraying at 150°C, and test the particle size and specific surface area of the particles. The particle size is D50=15-19μm, and the specific surface area is below 4m2 / g That's...
Embodiment 3
[0053] 1. Pour 0.2kg sodium carboxymethyl cellulose and 20L water into a blender, and stir at high speed for 2 hours to obtain sodium carboxymethyl cellulose glue.
[0054] 2. Pour the glue solution into a mechanical high-energy ball mill, and at the same time, mix 8kg of microcrystalline graphite with a particle size of D50=11-13μm and a purity of 99.95%, and 2kg of silicon powder with a particle size of D50=4-5μm and a purity of 99.99%. The softening point of 0.1kg is The low-temperature asphalt at 80°C is poured into a mechanical high-energy ball mill, and ball milled for about 3 hours under the protection of an argon atmosphere, and the particle size of the material is detected to be below 100nm.
[0055] 3. Put the ball-milled slurry into a centrifugal spray dryer, spray dry and granulate by centrifugal spraying at 150°C, and test the particle size and specific surface area of the particles. The particle size is D50=15-19μm, and the specific surface area is below 4m2 / g ...
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