Graphene quantum dot and preparation method thereof
A technology of graphene quantum dots and graphite powder, applied in graphene, chemical instruments and methods, inorganic chemistry, etc., can solve problems such as low degree of graphitization, difficulty in separating impurities, and affecting quality, and achieve high degree of graphitization and finished products High purity and good quality effect
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Embodiment 1
[0031] Example 1: Preparation of graphene quantum dots
[0032] The preparation method of graphene quantum dots comprises the following steps: 1. get the graphite powder block and mechanically mix with the molten salt catalyst; 2. get the mixture in step 1, preheat and keep warm; 3. take the mixture after the heat preservation in step 2 and directly heat up and heat preservation; 4. after cooling the mixture in step 3 to room temperature, soak in water to obtain a suspension; 5. take the suspension in step 4, and obtain a graphene quantum dot product through centrifugal filtration.
[0033] In step ①, the mass ratio of the graphite powder block to the molten salt catalyst is 1:2 to 1:8, preferably 1:5 in this embodiment.
[0034] In step 1, the graphite powder block is an industrial grade graphite powder, and the ash content of the graphite powder block of the present embodiment is not more than 0.05, the moisture content is not more than 0.02, and the carbon content is more t...
Embodiment 2
[0040] Example 2: Preparation of boron nitride quantum dots
[0041] For the preparation method of boron nitride quantum dots, the raw material is hexagonal boron nitride, and the rest are the same as those in Example 1.
[0042] Result analysis:
[0043] figure 1 The electron micrographs of the raw graphite powder block and boron nitride, the macroscopic view of the product solution and the schematic diagram of the reaction.
[0044] Depend on figure 1 It can be seen that the schematic preparation process of graphene quantum dots and boron nitride quantum dots. Diluted GQDS (5 mg / ml) was clear with black particles suspended. The low water solubility and metallic luster indicate that it has less hydrophilic functional groups, which is completely different from the previously reported carbon quantum dots (CQDS). BNQDs (5mg / ml) showed milky white color. Both GQDs and BNQDs tend to precipitate and aggregate. This is the result of a small number of hydrophilic functional gr...
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