Preparation method for super long titanium dioxide nanotube array with photocatalytic performance
A technology of nanotube arrays and titanium dioxide, applied in the direction of titanium dioxide, chemical instruments and methods, titanium oxide/hydroxide, etc., can solve the problems of reduced surface area, reduced catalytic performance, and inhibition of large-scale application of nano-titanium dioxide. Effect of surface area, high UV absorption properties
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Embodiment 1
[0026] The pure titanium is processed into a sample of 100mm×10mm×1mm by mechanical processing. After pretreatment, the applied voltage is 30V, and the volume ratio of ethylene glycol is 97%, the volume ratio of water is 2.5%, and the HF acid The volume ratio is 0.5%, and the anodic oxidation is carried out for 22 hours in the electrolyte solution whose pH value is adjusted to 6. The titanium dioxide nanotube array was washed with deionized water several times, placed in a drying oven, and dried at 70° C. to 80° C. for 1 hour. The morphology of the titanium oxide nanotube array prepared by this process is shown in Fig. 2 .
Embodiment 2
[0028] The titanium is processed into a sample of 100mm×10mm×1mm by mechanical processing. After pretreatment, the applied voltage is 70V, and the volume ratio of ethylene glycol is 97%, the volume ratio of water is 2.5%, and the volume of HF acid The ratio is 0.5%, and the pH value is adjusted to 6 in the electrolyte solution, and anodized for 60 hours. The titanium dioxide nanotube array was washed with deionized water several times, placed in a drying oven, and dried at 70° C. to 80° C. for 1 hour. The morphology of the titanium oxide nanotube array prepared by this process is shown in Fig. 3 .
Embodiment 3
[0030]The titanium alloy TLM is processed into a sample of 100mm×10mm×1.4mm by mechanical processing. After pretreatment, the applied voltage is 70V, and the volume ratio of ethylene glycol is 98%, the volume ratio of water is 1.0%, HF The volume ratio of the acid is 1.0%, and the pH value is adjusted to 7 in the electrolyte solution, anodized for 72 hours, the titanium dioxide nanotube array is washed with deionized water several times, placed in a drying oven, and dried at 70°C to 80°C for 1 hour . The morphology of the titanium oxide nanotube array prepared by this process is shown in Fig. 4 .
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