High-capacity lithium ion battery composite negative electrode material and preparation method thereof
A technology for lithium-ion batteries and negative electrode materials, applied in battery electrodes, batteries, secondary batteries, etc., can solve problems such as poor cycle performance and low charge-discharge specific capacity, and achieve low cost, easy operation, and simple process steps.
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Embodiment 1
[0037] (1) Mill silicon balls with a particle size of 20-30 μm in an ethanol medium at a high speed of 300 rpm for 3 hours, then dry at 100°C to obtain silicon powder with a particle size of 0.1-10 μm, and weigh 20 g of ball-milled silicon powder. Silicon fume, by Si / SnC 2 o 4 Medium Si and SnC 2 o 4 The mass ratio is 1:1 to calculate the SnC 2 o 4 Required mass, i.e. 20g SnC 2 o 4 , according to the calculated SnC 2 o 4 The required mass, according to the reaction of soluble stannous salt and soluble oxalate to generate SnC 2 o 4 The chemical reaction proportioning metering soluble stannous salt, wherein, soluble stannous salt is stannous chloride, and soluble oxalate is sodium oxalate, obtains 18.4g stannous chloride, silicon powder and the stannous chloride of metering gained Add 60g of water to obtain 98.4g of suspension.
[0038] (2) According to the reaction of soluble stannous salt and soluble oxalate to generate SnC 2 o 4 The chemical reaction ratio, accor...
Embodiment 2
[0046] The rest of the steps of Example 2 are exactly the same as Example 1, the difference is that Si / SnC 2 o 4 After that, press Si / SnC 2 o 4 The mass percentage composition of carbon elemental substance in / C is 10% to measure carbon material, and carbon material is conductive carbon black, and the Si / SnC that carbon material and obtain 2 o 4 After mixing, high-speed ball milling at 100 rpm for 3 hours to obtain Si / SnC particles with a particle size of 0.5-30 μm 2 o 4 / C.
[0047] The resulting Si / SnC 2 o 4 The SEM image of / C is as follows image 3 shown, from image 3 It can be seen that Si is replaced by SnC 2 o 4 After coating, a large particle structure with smooth surface is formed, while C (flaky substance) is uniformly dispersed in Si / SnC 2 o 4 (particles).
[0048] The resulting Si / SnC 2 o 4 / C is used for the negative electrode of lithium-ion batteries. The cycle performance test is carried out under the conditions of 25°C, 0.1C charge and discharg...
Embodiment 3
[0052] (1) Mill silicon balls with a particle size of 20-30 μm in an ethanol medium at a high speed of 360 rpm for 2.5 hours, then dry at 105°C to obtain silicon powder with a particle size of 0.1-10 μm, weigh 100 g after ball milling silicon powder, according to Si / SnC 2 o 4 Medium Si and SnC 2 o 4 The mass ratio of 1:10 calculated SnC 2 o 4 Required mass, that is, 1000g SnC 2 o 4 , according to the calculated SnC 2 o 4 The required mass, according to the reaction of soluble stannous salt and soluble oxalate to generate SnC 2 o 4 The chemical reaction ratio metering soluble stannous salt, wherein, soluble stannous salt is stannous sulfate, and soluble oxalate is potassium oxalate, obtains 1038.7g stannous sulfate, adds silicon powder and the stannous sulfate that metering gains in 4200g water , to obtain 5338.7g suspension.
[0053] (2) According to the reaction of soluble stannous salt and soluble oxalate to generate SnC 2 o 4 The chemical reaction ratio, accord...
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