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首页> 外文期刊>Nanoscale >A three-dimensional interconnected hierarchical FeOOH/TiO2/ZnO nanostructural photoanode for enhancing the performance of photoelectrochemical water oxidation
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A three-dimensional interconnected hierarchical FeOOH/TiO2/ZnO nanostructural photoanode for enhancing the performance of photoelectrochemical water oxidation

机译:一个三维的相互关联的层次FeOOH /二氧化钛/氧化锌nanostructural光电阳极提高光电化学的性能水氧化

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摘要

A novel ZnO/TiO2/FeOOH hierarchical nanostructure has been synthesized by a low temperature chemical bath deposition method. The integrated three-dimensional (3D) nanostructure consists of one-dimensional (1D) ZnO/TiO2 core-shell nanowire arrays and two-dimensional (2D) interconnected FeOOH nanosheets. By applying such a hierarchical nanostructure as a photoanode for photoelectrochemical water reaction, higher photostability and photocurrent density are gained compared with the reported ZnO based nanostructures. It is concluded that the giant enhancement of the properties is because, in the process of photoelectrochemical reaction, electron-hole separation and transfer are enhanced efficiently through the ZnO/TiO2 heterojunction, and in the meanwhile, terminal interconnected FeOOH nanosheets play both the roles of a surface catalyst and a protective layer effectively to accelerate water splitting reaction and enhance photostability. Based on such an environmentally friendly hierarchical nanostructure, photoelectrochemical water splitting and other similar reactions could be performed effectively and economically.
机译:一种新型氧化锌/二氧化钛/ FeOOH层次纳米结构合成了低温度化学浴沉积方法。三维(3 d)纳米结构包括一维(1 d)氧化锌/二氧化钛核壳纳米线数组和二维(2 d)相互连接FeOOH nanosheets。纳米结构的光电阳极光电化学反应,水高耐光性和光电流密度获得比基于氧化锌的报道纳米结构。增强的属性,因为在光电化学反应的过程,电子空穴分离和转移加强有效地通过氧化锌/二氧化钛与此同时,异质结,在终端互联FeOOH nanosheets玩的催化剂和表面保护的角色光解水制氢研究层有效地加速反应,提高耐光性。这样一个环保的层次纳米结构、光电化学水分裂和其他类似的反应进行有效和经济。

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