Graphene preparation method, and graphene prepared through using method
A technology of graphene and graphite, applied in the field of graphene, can solve the problems of low cost, stable and controllable product performance, and simple preparation method of graphene
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Embodiment 1
[0070] Preparation of Graphite Interlayer Compounds by Battery Discharge Method
[0071] Special spherical graphite SSG (active material) (obtained from Hunan Loudi Huiyu Technology Co., Ltd.), acetylene black (conductive agent, particle size: about 10nm), polyvinylidene fluoride PVDF (binder) in a mass ratio of 8:1 Mix in a ratio of 1:1, add 1-methyl-2-pyrrolidone (NMP) to make the PVDF concentration in the range of 0.005-0.03g / ml, stir well, and adjust to a paste slurry. Spread it evenly on the copper foil. After the solvent is completely volatilized, use a puncher to make a circular graphite electrode sheet. After vacuum drying the prepared graphite electrode sheet at 80°C for 12 hours, use a metal lithium sheet as a The negative electrode of the battery, the graphite electrode as the positive electrode of the battery, the solution in which lithium hexafluorophosphate is dissolved in a ternary mixed solvent of EC / EMC / DMC (ethylene carbonate / ethyl methyl carbonate / dimethyl c...
Embodiment 2
[0078] Preparation of Graphite Interlayer Compounds by Battery Discharge Method
[0079] Except that the pulse discharge time was 3 days, other operations were the same as in Example 1, so as to obtain a second-order lithium-graphite intercalation compound. The yield of the final graphene obtained is 0.59%, the thickness of the obtained graphene is between 2.1 and 9.2, that is, the number of layers is between about 5 and 26 layers, the length and width are between 100 and 6300 nm, and the D peak in the Raman spectrum and the intensity ratio of G peak to I D / I G The value is 0.68.
Embodiment 3
[0081] Preparation of Graphite Interlayer Compounds by Battery Discharge Method
[0082] Except that the pulse discharge time was 2 days, other operations were the same as in Example 1, so as to obtain a third-order lithium-graphite intercalation compound. The yield of the final graphene obtained is 0.45%, the thickness of the obtained graphene is between 4.5 and 11.3, that is, the number of layers is between about 12 and 32 layers, the length and width are between 130 and 7000 nm, and the D peak in the Raman spectrum and the intensity ratio of G peak to I D / I G The value is 0.67.
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