A kind of negative electrode active material and its preparation method and application
A negative electrode active material, graphite intercalation technology, applied in the direction of negative electrode, active material electrode, battery electrode, etc., can solve the problems of increasing the polarization of the graphite anode, the polarization of the graphite anode, and reducing the battery life, and achieve the insertion speed. The effect of optimization, optimized cycle life, improved transfer speed
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[0042] The present invention also provides a method for preparing any one of the above negative electrode active materials, comprising the following steps:
[0043] 1) Combining graphite with Li-rich antiperovskite material Li 3 OX mixed and ground to obtain a mixture;
[0044] 2) heating the mixture to 282-400° C., keeping it warm, and cooling to obtain the negative electrode active material.
[0045] In step 1), the graphite can be selected from one of natural graphite, artificial graphite and mesocarbon microspheres, and the further particle size can be 30-100 μm; the lithium-rich antiperovskite material Li 3 OX can be selected from Li 3 OF, Li 3 OCl, Li 3 OBr, Li 3 OI, Li 3 OA x B y (A, B are selected from one of F, Cl, Br, and I and are different from each other, x+y=1) or a combination thereof.
[0046] Specifically, during the grinding process, graphite and lithium-rich antiperovskite materials Li 3 OX for grinding treatment, generally, the grinding time is at...
Embodiment 1
[0068] The preparation method of the negative electrode active material of the present embodiment comprises the following steps:
[0069] The Li-rich antiperovskite material Li 3 OCl and graphite powder with a particle size of 20 μm (lithium-rich antiperovskite material Li 3 The mass ratio of OX and graphite powder is 0.01:1) and put it in a glove box (moisture and oxygen content less than 0.5ppm) to grind for 1h, put the ground mixture in a stainless steel reaction kettle, heat it to 350°C, and keep it warm for 24h , rapid cooling (cooling to 25° C. within 5 min), to obtain the negative electrode active material G1 of this embodiment.
Embodiment 2
[0071] The preparation method of the negative electrode active material G2 in this example is basically the same as that in Example 1, the only difference is that in this example, the lithium-rich antiperovskite material Li 3 The mass ratio of OCl and graphite powder is 0.02:1.
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