A kind of molybdenum selenide nanosheet/graphene nanoribbon composite material and preparation method thereof
A graphene nanoribbon and composite material technology, applied in the field of molybdenum selenide nanosheet/graphene nanoribbon composite material and its preparation, can solve the problems that the excellent properties of molybdenum selenide cannot be fully utilized, poor conductivity, etc., to achieve Effective and quick preparation method, simple preparation process and easy operation
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Embodiment 1
[0046] Embodiment 1, the present embodiment comprises the following steps:
[0047] (1) Disperse 150 mg of multi-walled carbon nanotubes in 98% concentrated sulfuric acid, and then add 85% phosphoric acid after the dispersion is uniform, and keep stirring during this process to obtain a uniform dispersion;
[0048] (2) Add 750 mg potassium permanganate to the above dispersion, add in batches, and keep stirring;
[0049] (3) Slowly raise the temperature of the reaction system to 70°C. After the temperature is stable, keep it warm for a period of time and keep stirring;
[0050] (4) Cool the resulting mixed dispersion to room temperature naturally, then pour it into ice water containing 7mL of 50% hydrogen peroxide, and let it settle overnight;
[0051] (5) Wash the obtained precipitate several times with 10% hydrochloric acid aqueous solution, and then wash it several times with a mixed solution of ethanol / ether;
[0052] (6) Centrifugal drying to obtain solid graphene oxide ...
Embodiment 2
[0059] Example 2, the amount of the selenium powder dispersion in Example 1 was changed to 2.5 mL, the quality of sodium molybdate was changed to 15.32 mg, the rest were the same as in Example 1, and the finally obtained composite material was recorded as GNR@MoSe 2 -1.
Embodiment 3
[0060] Example 3, the amount of the selenium powder dispersion in Example 1 was changed to 5 mL, the quality of sodium molybdate was changed to 30.64 mg, the rest were the same as in Example 1, and the finally obtained composite material was recorded as GNR@MoSe 2 -2.
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