Preparing method and application of compound titanate nanotube photocatalyst
A composite titanate and photocatalyst technology, which is applied in the field of nanotube photocatalyst preparation, can solve problems such as poor stability, small loading capacity, and complex process, and achieve simple process, improved spectral response range, and improved quantum efficiency and optical efficiency. The effect of catalytic hydrogen production performance
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specific Embodiment approach 1
[0012] Specific implementation mode one: the preparation method of composite titanate nanotube photocatalyst in this embodiment is as follows: one, titanate and diluent are made into solution according to the volume ratio of 1:10; The mass ratio of ionized water is 0.2-18:100. Dissolve metal salt in deionized water, slowly drop concentrated nitric acid, the volume ratio of concentrated nitric acid and dissolved metal salt in deionized water is 1:5, and then stir evenly to make Solution; 3. Drop the solution prepared in step 2 into the solution prepared in step 1, so that the mass ratio of the metal salt in the solution to the titanium dioxide contained in the solution in step 1 is 0.01-40: 100, stir for 30-60 minutes, and prepare into a sol; 4. Dry the sol for 8-16 hours at 50-100°C, then put it into a crucible and sinter it at 200-1000°C for 4-6 hours, then mix the product with aqueous sodium hydroxide solution at 0.2-30: Disperse in 4-16mol / L sodium hydroxide aqueous solutio...
specific Embodiment approach 2
[0013] Embodiment 2: This embodiment differs from Embodiment 1 in that in step 2, the metal salt and deionized water are dissolved in deionized water at a mass ratio of 0.3-5:100. Others are the same as in the first embodiment.
specific Embodiment approach 3
[0014] Embodiment 3: This embodiment differs from Embodiment 1 in that in step 2, the metal salt and deionized water are dissolved in deionized water at a mass ratio of 5.5-10:100. Others are the same as in the first embodiment.
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