A high-efficiency surface plasma visible-light-induced photocatalyst composite material (Ag@AgCl)-Ni/RGO having magnetic responsibility
A surface plasmon, composite material technology, applied in the field of ionic visible light catalyst composite material-Ni/RGO, can solve the problems of affecting catalytic performance, low electrical conductivity, limiting charge migration, etc., to improve catalytic performance and good magnetic responsiveness. , the effect of excellent electrical conductivity
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Embodiment 1
[0023] Example 1: Preparation of visible light catalyst composite (Ag@AgCl)-Ni / RGO
[0024] Weigh successively 0.05g graphite oxide (GO), 0.118g NiCl 2 ·6H 2 O, ultrasonic dispersion in 70mL ethylene glycol, ultrasonic time is 60min. Then, with the assistance of magnetic stirring, 10 mL of hydrazine hydrate (N 2 h 4 ·H 2 O, 80wt%) solution. After continuing to stir for 15 min, the mixture was transferred to a 100 mL reactor and reacted at 200°C for 45 min. After the solvothermal reaction was completed, the intermediate product was cooled at room temperature and washed repeatedly with ethanol and water to obtain a Ni / RGO composite material.
[0025] In a dark room environment, the intermediate product Ni / RGO was dispersed in 40mL containing 0.17g AgNO 3 After mechanical stirring for 30 min, 10 mL of an aqueous solution containing 0.059 g of NaCl was slowly added dropwise. After continuing to stir for 12 h in a dark room environment, irradiate with a 500W xenon lamp for ...
Embodiment 2
[0027] Example 2: Preparation of visible light catalyst composite (Ag@AgCl)-Ni / RGO
[0028] Weigh successively 0.05g graphite oxide (GO), 0.118g NiCl 2 ·6H 2 O, ultrasonic dispersion in 60mL ethylene glycol, ultrasonic time is 90min. Then, with the assistance of magnetic stirring, 10 mL of hydrazine hydrate ((N 2 h 4 ·H 2 O, 80wt%)) solution. After continuing to stir for 15 min, the mixture was transferred to a 100 mL reactor and reacted at 200°C for 60 min. After the solvothermal reaction was completed, the intermediate product was cooled at room temperature and washed repeatedly with ethanol and water to obtain a Ni / RGO composite material.
[0029] In a dark room environment, the intermediate product Ni / RGO was dispersed in 40mL containing 0.17g AgNO 3After mechanical stirring for 30 min, 10 mL of an aqueous solution containing 0.059 g of NaCl was slowly added dropwise. After continuing to stir for 12 h in a dark room environment, irradiate with a 500W xenon lamp for...
Embodiment 3
[0030] Example 3: Preparation of visible light catalyst composite (Ag@AgCl)-Ni / RGO
[0031] Weigh successively 0.05g graphite oxide (GO), 0.236g NiCl 2 ·6H 2 O, ultrasonic dispersion in 70mL ethylene glycol, ultrasonic time is 120min. Then, with the assistance of magnetic stirring, 10 mL of hydrazine hydrate (N 2 h 4 ·H 2 O, 80wt%) solution. After continuing to stir for 15 min, the mixture was transferred to a 100 mL reactor and reacted at 200°C for 45 min. After the solvothermal reaction was completed, the intermediate product was cooled at room temperature and washed repeatedly with ethanol and water to obtain a Ni / RGO composite material.
[0032] In a dark room environment, the intermediate product Ni / RGO was dispersed in 40mL containing 0.17g AgNO 3 After mechanical stirring for 60 min, 10 mL of an aqueous solution containing 0.059 g of NaCl was slowly added dropwise. After continuing to stir for 12 h in a dark room environment, irradiate with a 500W xenon lamp for...
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