Preparation method of zinc copper sulfide flower-like micro-sphere super-structure visible-light-driven photocatalyst composed of nanosheets
A flower-shaped microsphere, copper-zinc sulfide technology, applied in the field of photocatalysis, can solve the problems of weak oxidative degradation ability of pollutants, unstable photocatalyst, low solar energy utilization rate, etc., and achieves increased oxidative degradation ability and strong photocorrosion resistance. , the effect of low cost
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Embodiment 1
[0022] (a) Weigh 0.82g CuCl 2 2H 2 O and 0.35 g ZnSO 4 ·7H 2 O was added to 120mL ethylene glycol respectively (equivalent to adding Zn in every milliliter ethylene glycol 2+ with Cu 2+The amount of total substance is 0.05mmol), stirring and dissolving; Then add 1.83g thiourea (the amount of its substance is Zn 2+ with Cu 2+ 4 times of the amount of total substance), continue to stir until thiourea dissolves completely, obtain mixed solution;
[0023] (b) Add 60 mg of polyvinylpyrrolidone (equivalent to adding 0.5 mg of polyvinylpyrrolidone per milliliter of ethylene glycol) to the mixed solution, and stir evenly; then, stir and reflux at 130° C. for 1 hour;
[0024] (c) After the reaction is completed, naturally cool to room temperature, centrifuge, and wash the obtained precipitate with deionized water and absolute ethanol alternately and ultrasonically for 3 times, and after drying, a flower-shaped microsphere superstructure visible light catalyst composed of nanoshee...
Embodiment 2
[0027] (a) Weigh 1.42g CuSO 4 ·5H 2 O and 0.041g ZnCl 2 were added to 60mL 1,2-propanediol (equivalent to adding Zn 2+ with Cu 2+ The amount of total substance is 0.1mmol), stirring and dissolving; Then add 1.37g thiourea (the amount of its substance is Zn 2+ with Cu 2+ 3 times of the amount of total substance), continue to stir until thiourea dissolves completely, obtain mixed solution;
[0028] (b) Add 180 mg of polyvinylpyrrolidone (equivalent to 3 mg of polyvinylpyrrolidone per milliliter of 1,2-propylene glycol) into the mixed solution, and stir evenly; then, stir and reflux at 150° C. for 2 hours;
[0029] (c) After the reaction is completed, naturally cool to room temperature, centrifuge, and wash the obtained precipitate with deionized water and absolute ethanol alternately and ultrasonically for 3 times, and after drying, a flower-shaped microsphere superstructure visible light catalyst composed of nanosheets is obtained. Zn 0.05 Cu 0.95 S.
Embodiment 3
[0031] (a) Weigh 1.30g Cu(NO 3 ) 2 ·3H 2 O and 0.17g ZnSO 4 ·7H 2 O was added to 100mL ethylene glycol respectively (equivalent to adding Zn in every milliliter ethylene glycol 2+ with Cu 2+ The amount of total substance is 0.06mmol), stirring and dissolving; Then add 0.91g thiourea (the amount of its substance is Zn 2+ with Cu 2+ 2 times of the amount of total substance), continue to stir until thiourea dissolves completely, obtain mixed solution;
[0032] (b) Add 200 mg of polyvinylpyrrolidone (equivalent to 2 mg of polyvinylpyrrolidone per 1 ml of ethylene glycol) into the mixed solution, and stir evenly; then, stir and reflux at 160° C. for 3 hours;
[0033] (c) After the reaction is completed, naturally cool to room temperature, centrifuge, and wash the obtained precipitate with deionized water and absolute ethanol alternately and ultrasonically for 3 times, and after drying, a flower-shaped microsphere superstructure visible light catalyst composed of nanosheets i...
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