Method for preparing carbon boron nitrogen doped double-tube TiO2 nanotube array from ionic liquid on titanium base and application thereof
A technology of nanotube array and ionic liquid, which is applied in the field of new materials and its preparation, can solve the problems of unsatisfactory photocatalytic efficiency, inability to fully utilize sunlight, unfavorable catalyst reuse, etc., achieve good photoelectric characteristics, improve photocatalytic and photocatalytic performance, the effect of low cost
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Embodiment 1
[0015] (1) Cut a pure titanium sheet with a titanium content of 98-99.9% into 1cm×1cm, first polish and polish the surface of the pure titanium sheet with sandpaper until there is no obvious scratch, then ultrasonically clean it with acetone, ethanol and distilled water for 10 minutes, and dry it. spare.
[0016] (2) Firstly prepare the H containing 2 O 10vol% ethylene glycol organic solvent, stir and mix evenly, then use ethylene glycol organic solvent as basic electrolyte, the massfraction of preparation 1-butyl-3 methylimidazole tetrafluoroborate is 0.2wt% ethylene glycol Diol organic electrolyte, namely 0.2wt% 1-butyl-3-methylimidazolium tetrafluoroborate-10vol% H 2 For the electrolyte of O-ethylene glycol, the pretreated pure titanium sheet is used as the anode, and the platinum sheet is used as the cathode. On the DC stabilized power supply, adjust the anode voltage to 60V, ultrasonically disperse the electrolyte during the entire anodic oxidation reaction process, the...
Embodiment 2
[0019] (1) Cut the pure titanium sheet into 4cm×5cm, first polish the surface of the pure titanium sheet with sandpaper until there is no obvious scratch, then ultrasonically clean it with acetone, ethanol and distilled water for 15min, dry it, and set it aside.
[0020] (2) First prepare the mass fraction of N-ethylpyridine hexafluoroborate as 1.5wt% dimethylsulfoxide organic electrolyte, i.e. 1.5wt% N-ethylpyridine hexafluoroborate-dimethylsulfoxide Stir and mix the electrolyte evenly, use the pretreated pure titanium sheet as the anode, and the graphite rod as the cathode, adjust the electrolysis distance to 3cm, put the two electrodes into the electrolyte, adjust the anode voltage to 10V, and the ultrasonic power to 200W, After oxidizing for 180 minutes, the reaction was terminated.
[0021] (3) Take out the anodized titanium sheet, wash it with distilled water to remove residual ions, dry it at room temperature, and place the sample in a muffle furnace for calcination at ...
Embodiment 3
[0023] (1) Cut the pure titanium sheet into 10cm×10cm, first polish the surface of the pure titanium sheet with sandpaper until there is no obvious scratch, then ultrasonically clean it with acetone, ethanol and distilled water for 20 minutes, dry it, and set it aside.
[0024] (2) Firstly prepare the H containing 2 The glycerol organic solvent of 050vol%, stirs and mixes, then with glycerol organic solvent as base electrolytic solution, the massfraction of preparation tetrabutylphosphine tetrafluoroborate is the glycerol organic electrolytic solution of 3wt%, That is, 3wt% tetrabutylphosphine tetrafluoroborate-50vol% H 2 O-glycerol, use the pretreated pure titanium sheet as the anode, and the platinum sheet as the cathode, adjust the electrolysis distance to 6cm, put the two electrodes into the electrolyte, adjust the anode voltage to 100V, and the ultrasonic power to 800W, and oxidize for 10min , the reaction terminates.
[0025] (3) Take out the anodized titanium sheet, w...
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