A modified g-c 3 no 4 –sio 2 Heterojunction photocatalyst and preparation method thereof
A photocatalyst, g-c3n4 technology, applied in catalyst activation/preparation, organic compound/hydride/coordination complex catalyst, physical/chemical process catalyst, etc., can solve the problem of limiting the enrichment effect of pollutants in water, adsorbent It is not easy to add too much, which is not conducive to the photocatalytic reaction, etc., and achieves the effects of high practical value and application prospects, simple preparation method, and easy availability of raw materials.
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Embodiment 1
[0030] Embodiment 1 modified g-C 3 N 4 – SiO 2 Preparation of Heterojunction Photocatalysts
[0031] (1) Put 30g of melamine in a tube furnace and calcinate at 500°C for 4 hours in an air atmosphere to obtain g-C 3 N 4 .
[0032] (2) Mix 8 mL of ethyl silicate and 40 mL of absolute ethanol, and add 1 g of g-C prepared in the above steps 3 N 4 , configured as A mixed solution; 6mL of HNO with a concentration of 1mol / L 3 , 2mL of HF with a volume concentration of 3% and 12mL of absolute ethanol were mixed to form a mixed solution of B; while stirring, the mixed solution of B was added to the mixed solution of A to form a sol; After 24 hours of reaction, the cooled product was filtered and separated, and the separated solid matter was washed and dried to obtain g-C 3 N 4 / SiO 2 catalyst of light.
[0033] (3) 2g of g-C prepared in the above steps 3 N 4 / SiO 2 Add it to 100mL of absolute ethanol, then add 3g of thiourea, stir and mix evenly, then add 2g of dicyclohex...
Embodiment 2
[0034] Embodiment 2 modified g-C 3 N 4 – SiO 2 Preparation of Heterojunction Photocatalysts
[0035] (1) Put 30g of melamine in a tube furnace and calcinate at 550°C for 4 hours in an air atmosphere to obtain g-C 3 N 4 .
[0036] (2) Mix 8 mL of ethyl silicate and 40 mL of absolute ethanol, and add 2 g of g-C prepared in the above steps 3 N 4 , configured as A mixed solution; 8mL of HNO with a concentration of 1mol / L 3 , 3mL of HF with a volume concentration of 3% and 12mL of absolute ethanol were mixed to form a mixed solution of B; while stirring, the mixed solution of B was added to the mixed solution of A to form a sol; After 24 hours of reaction, the cooled product was filtered and separated, and the separated solid matter was washed and dried to obtain g-C 3 N 4 / SiO 2 catalyst of light.
[0037] (3) 2g of g-C prepared in the above steps 3 N 4 / SiO 2 Add to 120mL of absolute ethanol, then add 4g of thiourea, stir and mix evenly, then add 3g of dicyclohexylc...
Embodiment 3
[0038] Embodiment 3 modified g-C 3 N 4 – SiO 2 Preparation of Heterojunction Photocatalysts
[0039] (1) Put 30g of melamine in a tube furnace and calcinate at 550°C for 5 hours in an air atmosphere to obtain g-C 3 N 4 .
[0040] (2) Mix 8 mL of ethyl silicate and 40 mL of absolute ethanol, and add 2 g of g-C prepared in the above steps 3 N 4 , configured as A mixed solution; 10mL of HNO with a concentration of 1mol / L 3 , 4mL of HF with a volume concentration of 3% and 12mL of absolute ethanol were mixed to form a mixed solution of B; while stirring, the mixed solution of B was added to the mixed solution of A to form a sol; After 30 hours of reaction, the cooled product was filtered and separated, and the separated solid matter was washed and dried to obtain g-C 3 N 4 / SiO 2 catalyst of light.
[0041] (3) 2g of g-C prepared in the above steps 3 N 4 / SiO 2 Add it to 120mL of absolute ethanol, then add 6g of thiourea, stir and mix evenly, then add 4g of dicyclohe...
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