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Characterization and Photocatalytic Activity of TiO2Nanotube Films Prepared by Anodization

机译:阳极氧化法制备TiO2纳米管薄膜的表征及光催化活性

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Titanium dioxide nanotube (TNT) arrays were prepared in electrolytes containing fluoride by anodic oxidation. Different preparation parameters were investigated in order to evaluate their effects on length and inner diameter of nanotube, including weight ratio of glycerol to water, anodization voltage, electrolysis time, bath temperature, and electrolyte solution pH. The well defined and highly ordered TNT arrays were formed in electrolyte containing 40, and 20% water. The inner diameter of TNT was observed to increase as anodization voltage increased across the range of 10–40 V. The length of TNT was affected simultaneously by both anodization voltage and electrolysis time. The inner diameter and length depend on bath temperature below 60°C. The morphology of TNT was well defined and highly ordered only at electrolyte solution pH of 6 across the pH range of 2–10. Photocatalysis of methylene blue showed that reaction rate constants by TNT films were higher than P-25 films at comparable thickness. Reaction rate constants by TNT films increased as film thickness increased, but the enhancement was retarded when the length of TNT reached 2200 nm which appeared to be the limited penetration of incident UV light.
机译:通过阳极氧化在含氟化物的电解质中制备二氧化钛纳米管(TNT)阵列。为了评估它们对纳米管的长度和内径的影响,研究了不同的制备参数,包括甘油与水的重量比,阳极氧化电压,电解时间,浴温和电解液pH值。在含有40%和20%水的电解质中形成了定义明确且高度有序的TNT阵列。在10–40 V范围内,随着阳极氧化电压的增加,TNT的内径会增加;阳极氧化电压和电解时间会同时影响TNT的长度。内径和长度取决于低于60°C的浴温。仅在2-10的pH范围内,当电解质溶液的pH值为6时,TNT的形态才能很好地定义并高度有序。亚甲基蓝的光催化表明,在相当的厚度下,TNT薄膜的反应速率常数高于P-25薄膜。 TNT膜的反应速率常数随膜厚的增加而增加,但当TNT的长度达到2200nm时,这种增强作用被阻止,这似乎是入射紫外线的有限穿透。

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