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Improvement the wastewater purification by TiO2 nanotube arrays: The effect of etching-step on the photo-generated charge carriers and photocatalytic activity of anodic TiO2 nanotubes

机译:改进TiO2纳米管阵列的废水净化:蚀刻步骤对阳极TiO2纳米管的光催化载流子和光催化活性的影响

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The current study demonstrates how the etching step in anodization process effects on the photocatalytic activity of TiO2 nanotubes. In this regard, the TiO2 nanotubes were made by one-step and two-step anodization process on two different substrates Ti and etched-Ti foils, respectively. The results revealed that two-step anodization process is a beneficial way to prepare highly well-organized structure and regular surface. The two-step anodization by an enhancement in the fluoride ions diffusion led to a decrease in nanotubes' porosity and an increment in the nanotubes' surface area, a factor of roughness, and the ratio of length to diameter, respectively. As a consequence of the improvement in geometrical properties, the two-step TiO2 nanotubes led to the intensification of photocurrent density (from 0.383 to 0.677 mA cm(-2)) and photoconversion efficiency (from 0.18% to 0.29%) in comparison with the one-step nanotubes, respectively. Further, a synergetic impact of the photoelectrochemical measurement and photocatalytic process was observed. The degradation efficiencies of 2,4-dichlorophenol by two-step nanotubes increased from 47 to 55% under visible light, and from 58 to72% under UV irradiation, which it was attributed to more light harvesting, more photo-generated electrons, higher separation efficiency and improvement in geometrical properties. Furthermore, the kinetic study showed that the reactions follow first-order kinetics and the reaction rate constants by two-step nanotubes are 1.25 and 1.44 times as great as those of one-step nanotubes under visible and UV irradiation, respectively. Moreover, the reusability tests showed that 2-step TiO2 nanotubes has good stability and is active even up to the Fifth run.
机译:目前的研究表明如何蚀刻步骤如何对TiO2纳米管的光催化活性作用。在这方面,TiO2纳米管通过分别在两种不同的基板Ti和蚀刻-TI箔上的一步和两步阳极氧化过程进行。结果表明,两步阳极氧化过程是制备高度有组织结构和规则表面的有益方式。通过氟离子扩散中的增强的两步阳极氧化导致纳米管孔隙率的降低和纳米管表面积的增量,粗糙度因子和长度与直径的比率。由于几何特性的改善,两步TiO2纳米管导致光电流密度的强化(0.383至0.677 mA cm(-2))和光电转换效率(从0.18%到0.29%)相比分别是一步纳米管。此外,观察到光电化学测量和光催化过程的协同影响。两步纳米管的2,4-二氯苯酚的降解效率从可见光下的47升至55%,在紫外线照射下的58至72%,它归因于更多的光收获,更多的光产生的电子,更高的分离几何特性的效率和改善。此外,动力学研究表明,反应遵循一流的动力学和两步纳米管的反应速率常数分别为1.25和1.44倍,分别在可见和紫外线照射下的一步纳米管的1.44倍。此外,可重用性试验表明,2步TiO2纳米管具有良好的稳定性,并且甚至均匀于第五次运行。

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