Sulfur-doped molybdenum selenide/graphene-graphene nanoribbon airgel and its preparation
A graphene nanoribbon, graphene technology, applied in electrical components, electrochemical generators, structural parts, etc., can solve the problems of insufficient exposure of electrochemical active sites, affecting catalytic properties and energy storage cycle stability. , to achieve the effect of enhancing electron transport kinetics, improving electrochemical reaction, and curbing self-aggregation
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Embodiment 1
[0040] A preparation method of sulfur-doped molybdenum selenide / graphene-graphene nanoribbon airgel, the specific steps are:
[0041] (1) disperse 200mg graphene oxide in 100ml deionized water, obtain the graphene oxide dispersion liquid that the concentration of stable dispersion is 2mg / ml by ultrasonic;
[0042] (2) The graphene oxide nanoribbon aqueous dispersion liquid that the concentration of 3ml is 2mg / ml is dripped in the graphene oxide liquid of 3ml, stirs for a period of time, forms the mixed dispersion of uniform graphene oxide and graphene oxide nanoribbon liquid;
[0043] (3) Freeze the mixed dispersion of graphene oxide and graphene oxide nanobelts into a solid in liquid nitrogen, then freeze-dry in a freeze dryer (the temperature of the freeze dryer is between -30 and -55°C) for 48h , and then calcined and reduced at a temperature of 900°C for 2 hours to obtain a graphene-graphene nanoribbon hybrid aerogel;
[0044] (4) Dissolve 20mg of selenium powder in 10ml...
Embodiment 2
[0049] Change the volume of the graphene oxide nanoribbon in Example 1 to 4ml, and the volume of graphene oxide to 2ml, and the rest are the same as in Example 1. The composite material finally obtained is denoted as S-MoSe 2 @GGNR-2.
Embodiment 3
[0051] Change the quality of the selenium powder in Example 1 to 40mg, and the rest are the same as in Example 1. The composite material finally obtained is denoted as S-MoSe 2 @GGNR-3.
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