Preparation method for an Ag/AgBr/GO nano-composite photocatalyst
A photocatalyst and nanocomposite technology, applied in the direction of physical/chemical process catalysts, chemical instruments and methods, chemical/physical processes, etc., can solve cumbersome problems, achieve high catalytic efficiency, good catalytic stability, and simple preparation process Effect
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Embodiment 1
[0027] The specific preparation steps of 1#Ag / AgBr / GO nanocomposite are as follows:
[0028] (1) Preparation of GO
[0029] 0.5g graphite powder and 1.5g KMnO 4 Put it into a round-bottomed flask containing 12 mL of concentrated sulfuric acid, stir magnetically for 4 h under ice-water bath conditions, heat to 35 °C, stir at constant temperature for 30 min, add 23 mL of distilled water dropwise, heat up to 98 °C, stir for 15 min, and transfer the mixture to ice In the water bath, add 70 mL of distilled water to dilute, then add 10 mL of 30% hydrogen peroxide, stir for 30 min, the solution turns yellow, centrifuge, fully wash until the pH of the supernatant is 7, and dry the lower sediment to obtain GO.
[0030] (2) Preparation of Ag / AgBr / GO nanocomposites
[0031] Measure 12 mL of ethylene glycol and put it into a round-bottomed flask, stir at a constant temperature of 60 °C for 30 min, add 54 mg of PVP and 120 mg of CTAB, continue to stir until the two are completely dissolv...
Embodiment 2
[0033] The specific preparation steps of 2#Ag / AgBr / GO nanocomposites are as follows:
[0034] (1) Preparation of GO
[0035] The same as the preparation method of GO in Example 1.
[0036] (2) Preparation of Ag / AgBr / GO nanocomposites
[0037] Measure 12 mL of ethylene glycol and put it into a round-bottomed flask, stir at a constant temperature of 60 °C for 30 min, add 95 mg of PVP and 120 mg of CTAB, continue to stir until the two are completely dissolved, then add 5 mg of GO prepared by the above method, and continue to stir for 2 h to make GO is uniformly distributed in the above solution, and the suspension at this time is called A. In addition, weigh 100mg AgNO at room temperature 3 , which was dissolved in 1.5 mL of ethylene glycol, called solution B. Under stirring, drop solution B into suspension A with a plastic dropper, stir for 30 min, increase the temperature to 155°C, and stir for 15 min to complete the reaction. The reactants were cooled to room temperature,...
Embodiment 3
[0039] The specific preparation steps of 3#Ag / AgBr / GO nanocomposites are as follows:
[0040] (1) Preparation of GO
[0041] The same as the preparation method of GO in Example 1.
[0042] (2) Preparation of Ag / AgBr / GO nanocomposites
[0043] Measure 12 mL of ethylene glycol and put it into a round-bottomed flask, stir at a constant temperature of 60 °C for 30 min, add 150 mg of PVP and 120 mg of CTAB, continue to stir until the two are completely dissolved, then add 5 mg of GO prepared by the above method, and continue to stir for 2 h to make GO is uniformly distributed in the above solution, and the suspension at this time is called A. In addition, weigh 100mg AgNO at room temperature 3 , which was dissolved in 1.5 mL of ethylene glycol, called solution B. Under stirring, drop solution B into suspension A with a plastic dropper, stir for 30 min, increase the temperature to 155°C, and stir for 15 min to complete the reaction. The reactants were cooled to room temperature...
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