Hydrogen production composite material base on sulfide-based photo-electric bifunctional catalysis and preparation method thereof
A technology of bifunctional catalysis and composite materials, applied in the field of sulfide-based photo-electric bifunctional catalytic hydrogen production composite materials, can solve the problem of poor electrochemical performance of photocatalysts, side reactions of catalyst electrolytes, no electrochemical hydrogen production, etc. It can improve the efficiency of photodecomposition hydrogen production, improve electrochemical stability and service life, and improve the effect of photochemical activity.
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[0026] Nano-MoS 2 The sheet preparation method comprises the following steps:
[0027] (1) Weigh MoS with a mass ratio of 1.5-2 2 Add the powder and NaCl powder into the planetary ball mill. The revolution speed of the ball mill is 50-70 rpm, and the rotation speed is 620-650 rpm. Perform ball milling for 6-7 hours. Add an appropriate amount of distilled water to the ball mill and continue to maintain the speed for ball milling for 5-6 h.
[0028] (2) Transfer the ball mill solution into a high-speed centrifuge at a centrifugal speed of 7000-8000 rpm, perform centrifugation for 4-6 times, remove the upper aqueous solution until the lower solid does not contain NaCl, and fully dry the lower solid to obtain nano-MoS 2 piece.
[0029] Ni-doped Co9 S 8 for Ni 0.5-2 co 7-8.5 S 8 , the preparation method comprises the following steps:
[0030] (1) Add ethylene glycol solvent to the reaction flask, then add NiCl 2 、CoCl 2 , NiCl 2 、CoCl 2 The molar ratio of the substance ...
Embodiment 1
[0036] (1) Preparation of nano-MoS 2 Sheet 1: Weigh MoS with a mass ratio of 1.5 2 The powder and NaCl powder were added to the planetary ball mill, the revolution speed of the ball mill was 50 rpm, and the rotation speed was 620 rpm, and the ball mill was carried out for 6 h, and an appropriate amount of distilled water was added to the ball mill, and the ball mill was continued for 5 h at the speed, and the ball mill solution was transferred into a high-speed In the centrifuge, the centrifugal speed is 7000 rpm, centrifuged 4 times, the upper aqueous solution is removed until the lower solid does not contain NaCl, and the lower solid is fully dried to obtain nano-MoS 2 slice 1.
[0037] (2) Preparation of Ni 0.5 co 8.5 S 8 Component 1: Add ethylene glycol solvent to the reaction flask, then add NiCl 2 、CoCl 2 , NiCl 2 、CoCl 2 The molar ratio of the substance is 1:17, the material is stirred until dissolved and then added ethylenediamine, CoCl 2 The molar ratio of et...
Embodiment 2
[0041] (1) Preparation of nano-MoS 2 Sheet 2: Weigh MoS with a mass ratio of 1.5 2 The powder and NaCl powder were added to the planetary ball mill, the revolution speed of the ball mill was 70 rpm, and the rotation speed was 620 rpm, and the ball mill was carried out for 7 h, and an appropriate amount of distilled water was added to the ball mill, and the ball mill was continued for 6 h at the speed, and the ball mill solution was transferred into a high-speed In the centrifuge, the centrifugal speed is 7000 rpm, centrifuged for 6 times, the upper aqueous solution is removed until the lower solid does not contain NaCl, and the lower solid is fully dried to obtain nano-MoS 2 slice 2.
[0042] (2) Preparation of Ni 0.7 co 8.3 S 8 Component 2: Add ethylene glycol solvent to the reaction flask, then add NiCl 2 、CoCl 2 , NiCl 2 、CoCl 2 The molar ratio of the substance is 1:11.8, the material is stirred until dissolved and then added ethylenediamine, CoCl 2 The molar ratio...
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