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3-D vertical arrays of TiO2 nanotubes on Ti meshes: Efficient photoanodes for water photoelectrolysis

机译:Ti网格上TiO2纳米管的3-D垂直阵列:用于水光电解的高效光阳极

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摘要

This paper describes a type of photoanode for water photoelectrolysis based on 3-D configurations of TiO2 nanotube arrays, which are grown on Ti meshes in a radially outward direction. When compared with traditional 2-D arrays, under the same light irradiance, 3-D nanotube arrays demonstrate a higher surface area, which improves the photocurrent by ~36.4% for water photoelectrolysis. In addition, the radial nature of 3-D arrays is capable of harvesting the incident light from any direction, leading to a low dependence of photocurrent on the angle of incident light. The effect of nanotube lengths on the photocatalytic activity of 3-D arrays for water photoelectrolysis has been investigated systematically. The addition of ethylene glycol in the electrolyte to function as a hole-scavenger further improves the photocurrent of 3-D arrays by ~40%.
机译:本文介绍了一种基于TiO2纳米管阵列的3-D构型的用于水光电解的光阳极,该构型是在Ti网上沿径向向外生长的。与传统的2-D阵列相比,在相同的光辐照下,3-D纳米管阵列具有更大的表面积,对于水光电解,其光电流提高了约36.4%。此外,3-D阵列的径向特性能够从任何方向收集入射光,从而导致光电流对入射光角度的依赖性较低。已经系统地研究了纳米管长度对3-D阵列对水光电解的光催化活性的影响。在电解质中添加乙二醇作为空穴清除剂,可将3-D阵列的光电流进一步提高约40%。

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