Preparation method of graphene water solution
A kind of olefin aqueous solution and graphene technology, applied in the direction of graphene, chemical instruments and methods, inorganic chemistry, etc., can solve the problems of unfavorable factors in the application of graphene, difficult to remove, etc., and achieve the effect of short time consumption and simple operation process
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Embodiment 1
[0013] Example 1: Weigh 20 mg of reduced graphene oxide powder, 10 mg of graphene oxidized graphene quantum dot powder obtained by concentrated sulfuric acid or a mixed acid of concentrated sulfuric acid and concentrated nitric acid, wherein the carbon and oxygen atomic content ratio is 20 : 1, the average lateral dimension is about 10nm. The above two powders were added to 40 mL of deionized water to prepare a mixed suspension of graphene and graphene quantum dots, and the suspension was ultrasonically dispersed to obtain a stably dispersed graphene aqueous solution. The obtained graphene aqueous solution and its absorbance change with time are as follows: figure 2 (a) and (b), shown by figure 2 (b) It can be seen that the absorbance of the graphene aqueous solution does not change much with the extension of time. After standing still for 200 hours, the absorbance is basically unchanged, which shows that the graphene aqueous solution prepared according to the conditions o...
Embodiment 2
[0014] Example 2: Weigh 40 mg of reduced graphene oxide powder and 10 mg of graphene quantum dot powder, wherein the carbon and oxygen atomic content ratio is 20:1, and the average lateral size is about 25 nm. The above two powders are added to 40mL deionized water to prepare a mixed suspension of graphene and graphene quantum dots, and ultrasonically disperse the suspension to obtain a mixture with figure 2 (a) and (b) are similar to stable dispersed graphene aqueous solution.
Embodiment 3
[0015] Example 3: Weigh 80 mg of reduced graphene oxide powder, 20 mg of graphene oxide is thermally cut by DMF solvent method to obtain graphene quantum dot powder, wherein the carbon and oxygen atomic content ratio is 13:1, and the average lateral size is about 5nm. The above two powders are added to 40mL deionized water to prepare a mixed suspension of graphene and graphene quantum dots, and ultrasonically disperse the suspension to obtain a mixture with figure 2 (a) and (b) are similar to stable dispersed graphene aqueous solution.
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