Preparation method for SiLiMn2O4CNT composite positive electrode material of lithium ion battery
A composite positive electrode material and lithium-ion battery technology, which is applied in battery electrodes, secondary batteries, circuits, etc., can solve the problems of being unable to adapt to the extensive demand for miniaturization, development, large-capacity, and high-power chemical power supplies, and achieve good discharge capacity and capacity retention The effect of high rate and high charge and discharge efficiency
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Embodiment 1
[0023] 1.5g of spherical nano-silicon with a particle size of 20 microns and 2.5g of lithium manganate powder with a particle size of 1.5 microns were ultrasonically dispersed in an aqueous solution for 6 hours, and then transferred to a ball mill tank for wet grinding at a speed of 500 rpm. Ball milled for 6 hours to achieve the purpose of evenly coating nano-silicon with acid embedding. Separately prepare carbon nanotubes, and fully ultrasonically disperse them in aqueous solution for 20 minutes. The ball-milled slurry was added to the carbon nanotube solution, and then stirred at a high speed for 1 hour. After spray drying, the inlet temperature is 250°C and the outlet temperature is 90°C to form a lithium-ion battery Si / LiMn 2 o 4 / CNT composite cathode material.
[0024] Battery production and electrochemical performance testing are as follows: Si / LiMn 2 o 4 / CNT composite cathode material, acetylene black and polyvinylidene fluoride in a mass ratio of 70:15:15, Si / L...
Embodiment 2
[0026] 1.8 g of spherical nano-silicon with a particle size of 15 μm and 2 g of lithium manganese oxide powder with a particle size of 1.0 μm were ultrasonically dispersed in an aqueous solution for 5 hours, and then transferred to a ball mill tank for wet grinding at a speed of 400 rpm. Hours to achieve the purpose of evenly coating nano-silicon with acid. Separately prepare carbon nanotubes, and fully ultrasonically disperse them in aqueous solution for 30 minutes. Add the ball-milled slurry into the carbon nanotube solution, and then perform high-speed stirring for 2 hours. After spray drying, the inlet temperature is 270°C and the outlet temperature is 95°C to form a lithium-ion battery Si / LiMn 2 o 4 / CNT composite cathode material.
[0027] Electrode preparation and performance testing are the same as in Example 1. After testing, the first discharge capacity is 883mAh / g, the charge and discharge efficiency is 88.3%, and the capacity retention rate after 20 cycles is 9...
Embodiment 3
[0029] 2.0g of spherical nano-silicon with a particle size of 13μm and 1.8g of lithium manganate powder with a particle size of 0.8μm were ultrasonically dispersed in an aqueous solution for 3 hours, and then transferred to a ball mill tank for wet grinding at a speed of 350 rpm. 3 hours to achieve the purpose of evenly coating nano-silicon by acid embedding. Separately prepare carbon nanotubes, and fully ultrasonically disperse them in aqueous solution for 40 minutes. Add the ball-milled slurry into the carbon nanotube solution, and then perform high-speed stirring for 1.5 hours. After spray drying, the inlet temperature is 285°C and the outlet temperature is 100°C to form a lithium-ion battery Si / LiMn 2 o 4 / CNT composite cathode material.
[0030] Electrode preparation and performance testing are the same as in Example 1. After testing, the first discharge capacity is 896mAh / g, the charge and discharge efficiency is 84.6%, and the capacity retention rate after 20 cycles...
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