Vanadium-doped nano titanium dioxide photocatalyst and preparation method thereof
A technology of nano-titanium dioxide and photocatalyst, which is applied in the field of photocatalytic materials, can solve the problems of low comprehensive performance of vanadium-doped nano-titanium dioxide materials, achieve strong adsorption performance, simple process flow, and large specific surface area
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Embodiment 1
[0028] (1) Add 90 mL of ethylene glycol (EG) as a solvent to a quartz cup, and add 19 mg of vanadyl acetylacetonate (VO(acac)2), in a 50°C water bath and magnetically stir for 10 minutes to VO(acac) 2 Completely dissolve to obtain a precursor solution;
[0029] (2) Measure 4 mL of isopropyl titanate (TIP, atomic ratio: V / Ti=0.5%) with a pipette, slowly drop it into a quartz cup, and continue magnetic stirring for 5 minutes to obtain a mixed solution;
[0030] (3) Inject 200mL of absolute ethanol into a 1000mL Hastelloy reaction kettle, then put the quartz cup into the kettle, and heat to 290°C for 5 hours to obtain the initial product;
[0031] (4) After the reaction is finished, the kettle body is naturally cooled to room temperature, then the sample is taken out, washed several times with alcohol and deionized water, and then dried;
[0032] (5) Put the obtained powder into a tube furnace, N 2 Annealing at 600°C for 4h under atmosphere to obtain black V-doped TiO 2 powder...
Embodiment 2
[0034] (1) Add 90 mL of ethylene glycol (EG) as a solvent to a quartz cup, and add 19 mg of vanadyl acetylacetonate (VO(acac)2), in a 50°C water bath and magnetically stir for 10 minutes to VO(acac) 2 Completely dissolve to obtain a precursor solution;
[0035] (2) Measure 4 mL of isopropyl titanate (TIP, atomic ratio: V / Ti=0.5%) with a pipette, slowly drop it into a quartz cup, and continue magnetic stirring for 5 minutes to obtain a mixed solution;
[0036] (3) Inject 200mL of isopropanol into a 1000mL Hastelloy reactor, then put the quartz cup into the kettle, and heat to 295°C for 4.5h to obtain the initial product;
[0037] (4) After the reaction is finished, the kettle body is naturally cooled to room temperature, then the sample is taken out, washed several times with alcohol and deionized water, and then dried;
[0038] (5) Put the obtained powder into a tube furnace, N 2 Annealed at 610°C for 3.5h under atmosphere to obtain black V-doped TiO 2 powder.
Embodiment 3
[0040] (1) Add 90 mL of ethylene glycol (EG) as a solvent to a quartz cup, and add 19 mg of vanadyl acetylacetonate (VO(acac)2), in a 50°C water bath and magnetically stir for 10 minutes to VO(acac) 2 Completely dissolve to obtain a precursor solution;
[0041] (2) Measure 4 mL of isopropyl titanate (TIP, atomic ratio: V / Ti=0.5%) with a pipette, slowly drop it into a quartz cup, and continue magnetic stirring for 5 minutes to obtain a mixed solution;
[0042] (3) Inject 200mL of methanol into a 1000mL Hastelloy reactor, then put the quartz cup into the kettle, and heat to 300°C for 4.2h to obtain the initial product;
[0043] (4) After the reaction is finished, the kettle body is naturally cooled to room temperature, then the sample is taken out, washed several times with alcohol and deionized water, and then dried;
[0044] (5) Put the obtained powder into a tube furnace, N 2 Annealed at 595°C for 4.5h under atmosphere to obtain black V-doped TiO 2 powder.
[0045] The pr...
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