Low-cost and stable lithium battery silicon negative electrode and preparation method thereof
A technology of silicon anode and lithium battery, applied in battery electrodes, secondary batteries, circuits, etc., can solve the problems of increased volume, high cost, complicated process, etc., and achieve the effect of reducing preparation cost, simple method and simplifying preparation process
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Embodiment 1
[0026] (1) Silicon-based nanoparticles with a particle size of 80nm, a viscosity of less than 5000mpa·s, a tensile strength of 6MPa, and an elongation of 20kN·m -1 Liquid silicone rubber and ethylene-vinyl acetate copolymer with a weight-average molecular weight of 100,000 are mixed evenly at a mass ratio of 10:3:1, heated to 120°C and melted, and the stirring speed is controlled to 700r / min to stir evenly so that silicon-based nanoparticles are evenly dispersed in the melt. body;
[0027] (2) Add 18 parts by weight of MgO, 8 parts by weight of graphene powder, and 45 parts by weight of carbon fiber into the prefabricated melt in step (1), set the ultrasonic dispersion power to 400-600W, and disperse for 20 minutes to obtain a slurry thing;
[0028] (3) Apply the slurry in step (2) to the surface of the negative electrode current collector, cure at 80°C for 2 hours, dry, slitting, and sheet-making to obtain a silicon negative electrode for a lithium battery.
[0029]The nega...
Embodiment 2
[0031] (1) Silicon-based nanoparticles with a particle size of 56nm, a viscosity of less than 5000mpa·s, a tensile strength of 5.8MPa, and an elongation of 24kN·m -1 Liquid silicone rubber and ethylene-vinyl acetate copolymer with a weight-average molecular weight of 60,000 are mixed evenly at a mass ratio of 10:3:1, heated to 110°C and melted, and the stirring speed is controlled to 800r / min to stir evenly so that silicon-based nanoparticles are evenly dispersed in the melt. body;
[0032] (2) Add 13 parts by weight of a mixture of benzoyl peroxide and cumin hydroperoxide (the mass ratio of the two is 1:1), 7 parts by weight of graphene powder, and 45 parts by weight of carbon fiber into step (1) In the prefabricated melt, set the ultrasonic dispersion power to 600W, and disperse for 15 minutes to obtain a slurry;
[0033] (3) Apply the slurry in step (2) to the surface of the negative electrode current collector, cure at 80°C for 2 hours, dry, slitting, and sheet-making to ...
Embodiment 3
[0036] (1) Silicon-based nanoparticles with a particle size of 10nm, a viscosity of less than 5000mpa·s, a tensile strength of 5MPa, and an elongation of 25kN·m -1 Liquid silicone rubber and ethylene-vinyl acetate copolymer with a weight-average molecular weight of 5000 are mixed evenly at a mass ratio of 10:3:1, heated to 105°C and melted, and the stirring speed is controlled to 800r / min to stir evenly so that silicon-based nanoparticles are evenly dispersed in the melt. body;
[0037] (2) Add 24 parts by weight of a mixture of dicyandiamide and organic amide (the mass ratio of the two is 1:1), 10 parts by weight of graphene powder, and 24 parts by weight of carbon fiber into the prefabricated melt of step (1), Set the ultrasonic dispersion power to 400W, and the dispersion time is 25min to obtain a slurry;
[0038] (3) Apply the slurry in step (2) to the surface of the negative electrode current collector, cure at 80°C for 2 hours, dry, slitting, and sheet-making to obtain ...
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