A nickel sulfide/graphene/co 3 the s 4 Preparation method of three-dimensional composite hydrogen storage material
A three-dimensional composite and hydrogen storage material technology is applied in the field of preparation of electrochemical hydrogen storage electrode materials, which can solve the problem that cobalt sulfide composite materials cannot be used as electrochemical hydrogen storage electrodes, etc. The effect of high hydrogen performance
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specific Embodiment approach 1
[0022] Specific embodiment one: a nickel sulfide / graphene / Co of this embodiment 3 S 4 The preparation method of the three-dimensional composite hydrogen storage material is carried out in the following steps:
[0023] 1. Prepare graphene oxide dispersion solution by Hummers method, adjust the concentration to 1.8~2.2mg / mL;
[0024] 2. Add cobalt acetate and sulfur to the graphene oxide dispersion solution at a molar ratio of 1:(3~4), continue to stir until uniform, to obtain a mixed solution; wherein the mass ratio of cobalt acetate to graphene is 1:(0.2 ~0.5);
[0025] 3. Press ZrO 2 The mass ratio of the grinding ball to the mixed liquid is 1:(15~20), the ZrO 2 The grinding ball and the mixed liquid are loaded with ZrO 2 The lining ball milling tank is filled with high-purity argon gas, and finally the ball milling tank is fixed in the ball mill, and the ball milling is performed at a speed of 500-700 rpm for 4-8 hours. After the ball milling is completed, the ball milling tank is ...
specific Embodiment approach 2
[0028] Embodiment 2: The difference between this embodiment and Embodiment 1 is that the concentration of graphene oxide in the graphene oxide dispersion solution in step 1 is 2 mg / mL; the others are the same as Embodiment 1.
specific Embodiment approach 3
[0029] Specific embodiment three: This embodiment is different from specific embodiment one or two in that the molar ratio of cobalt acetate to sulfur in step two is 1:3.5; the others are the same as those in specific embodiment one or two.
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