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Photoelectrochemical Performance of Smooth TiO_2 Nanotube Arrays: Effect of Anodization Temperature and Cleaning Methods

机译:光滑的TiO_2纳米管阵列的光电化学性能:阳极氧化温度和清洁方法的影响

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摘要

The formation of self-organized titanium dioxide (TiO_2) nanotube arrays without bundling or clustering is essential for their high efficiency in photoelectrochemical (PEC) application. The present paper reports on the use of different temperatures to control the specific architecture of nanotube arrays and effective cleaning techniques to ensure the formation of clean TiO_2 nanotube surface. The wall thickness of nanotube arrays could be controlled from 12.5 nm to 37.5 nm through different anodization temperature ranging from 10℃ to 80℃. Furthermore, ultrasonic cleaning combined with acetone showed the high-ordered TiO_2 nanotube arrays without morphological disorder, bundling, and microcrack problems. Based on the results obtained, a higher PEC response of 1 mA/cm~2 and a photoconversion efficiency of 1.3% could be achieved using a wall thickness of 12.5 nm and defect-free TiO_2 nanotube arrays for low charge transfer resistance.
机译:自组装的二氧化钛(TiO_2)纳米管阵列不发生束缚或聚集现象,对于其在光电化学(PEC)应用中的高效率至关重要。本文报道了使用不同的温度来控制纳米管阵列的特定结构以及有效的清洁技术以确保形成清洁的TiO_2纳米管表面的报道。通过在10℃至80℃范围内的不同阳极氧化温度,可以将纳米管阵列的壁厚控制在12.5 nm至37.5 nm之间。此外,超声清洗与丙酮结合显示出高阶的TiO_2纳米管阵列,而没有形态无序,成束和微裂纹问题。根据获得的结果,使用壁厚为12.5 nm和无缺陷的TiO_2纳米管阵列以实现低电荷转移电阻,可以实现1 mA / cm〜2的更高PEC响应和1.3%的光转换效率。

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