Factor Affecting Geometry of TiO2 Nanotube Arrays (TNAs) in Aqueous and Organic Electrolyte

K. A. Saharudin, S. Sreekantan, R. Mydin, N. Basiron, Warapong Krengvirat
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引用次数: 3

Abstract

TiO 2 nanotube arrays (TNA) have attracted scientific interest due to the combination of functional material properties with controllable nanostructure. Superior properties of TNA, including vectorial pathway of e (cid:1) transport, minimized e (cid:1) recombination, and high specific surface area render them as the most promising candidate for environment remediation, energy conversion and biocompatibilityapplications. The superior properties and efficacyof the TNA in various applications influenced by structural characteristics such as pore size, length and wall thickness. Therefore in this chapter the effect of various electrochemical parameters such as applied voltage, anodization time, electrolyte composition on the forma- tion of controlled dimension of TNA in aqueous and organic electrolytes are reviewed.
水电解质和有机电解质中TiO2纳米管阵列几何形状的影响因素
二氧化钛纳米管阵列(tio_2 nanotube arrays, TNA)由于其功能材料特性与可控纳米结构的结合而引起了科学界的广泛关注。TNA具有e (cid:1)载体传输途径、e (cid:1)重组最小化、高比表面积等优点,是环境修复、能量转化和生物相容性应用中最有前途的候选材料。孔径、长度和壁厚等结构特征影响了TNA在各种应用中的优异性能和效果。因此,本章综述了各种电化学参数如施加电压、阳极氧化时间、电解质成分等对水电解质和有机电解质中TNA可控尺寸形成的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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