A kind of negative electrode of lithium ion battery and preparation method thereof
A lithium-ion battery and negative electrode material technology, applied in battery electrodes, secondary batteries, circuits, etc., can solve the problems of large volume expansion and low conductivity of silicon negative electrodes, and achieve high production efficiency, reduce expansion, and improve ion conductivity. Effect
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Embodiment 1
[0017] A negative electrode material for a lithium ion battery, comprising silicon and a frame material, silicon is distributed in the frame material in nanometer size, the frame material is formed by carbon nanotubes or carbon black or carbon aerogel or a combination thereof, silicon The average primary particle diameter of carbon nanotubes is 400nm, the average diameter of carbon nanotubes is 7nm, and the average length is 5μm. The average primary particle diameter of carbon black is 15nm, the DBP absorption value is 180ml / 100g, and the porosity of carbon airgel is 80%. The typical pore size is 40nm, the network colloid particle diameter is 3nm, and the specific surface area is 600m 2 / g.
[0018] The preparation method of above-mentioned lithium-ion battery negative electrode material, comprises the following steps:
[0019] Step 1: Mix the framework material with micron-sized silicon particles, mix carbon nanotubes (CNT), Li435 and silicon particles in a mass ratio of 2:1...
Embodiment 2
[0024] A negative electrode material for a lithium ion battery, comprising silicon and a frame material, silicon is distributed in the frame material in nanometer size, the frame material is formed by carbon nanotubes or carbon black or carbon aerogel or a combination thereof, silicon The average primary particle diameter of carbon nanotubes is 450nm, the average diameter of carbon nanotubes is 9nm, and the average length is 10μm. The pore size is 45nm, the network colloid particle diameter is 14nm, and the specific surface area is 800m 2 / g.
[0025] The preparation method of above-mentioned lithium-ion battery negative electrode material, comprises the steps:
[0026] Step 1, the framework material is mixed with micron-sized silicon particles, CNT, carbon airgel and silicon particles are mixed in a mass ratio of 1:1:1, mixed in dry powder form for 30 minutes (stirred at 15 rpm), and then added with a total solid mass of 1.5 Double NMP was stirred at 15 rpm, dispersed at 18...
Embodiment 3
[0031]A negative electrode material for a lithium ion battery, comprising silicon and a frame material, silicon is distributed in the frame material in nanometer size, the frame material is formed by carbon nanotubes or carbon black or carbon aerogel or a combination thereof, silicon The average primary particle diameter of carbon nanotube is 490nm, the average diameter of carbon nanotube is 11nm, the average length is 20μm, the average primary particle diameter of carbon black is 70nm, the DBP absorption value is 350ml / 100g, and the porosity of carbon airgel is 98%, typical The pore size is 49nm, the network colloid particle diameter is 20nm, and the specific surface area is 1100m 2 / g
[0032] The preparation method of above-mentioned lithium ion battery negative electrode material, comprises the steps:
[0033] Step 1, the framework material is mixed with micron-sized silicon particles, Li435, carbon airgel and silicon particles are mixed at a mass ratio of 1:1:1, mixed in...
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