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Electrochemically hydrogenated TiO2 nanotubes with improved photoelectrochemical water splitting performance

机译:具有改进的光电化学水分解性能的电化学氢化TiO2纳米管

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摘要

One-dimensional anodic titanium oxide (ATO) nanotube arrays hold great potential as photoanode for photoelectrochemical (PEC) water splitting. In this work, we report a facile and eco-friendly electrochemical hydrogenation method to modify the electronic and PEC properties of ATO nanotube films. The hydrogenated ATO (ATO-H) electrodes present a significantly improved photocurrent of 0.65 mA/cm2 in comparison with that of pristine ATO nanotubes (0.29 mA/cm2) recorded under air mass 1.5 global illumination. The incident photon-to-current efficiency measurement suggests that the enhanced photocurrent of ATO-H nanotubes is mainly ascribed to the improved photoactivity in the UV region. We propose that the electrochemical hydrogenation induced surface oxygen vacancies contribute to the substantially enhanced electrical conductivity and photoactivity.
机译:一维阳极氧化钛(ATO)纳米管阵列具有巨大的潜力,可作为光电化学(PEC)水分解的光阳极。在这项工作中,我们报告了一种简便且环保的电化学加氢方法,以改变ATO纳米管薄膜的电子和PEC性能。与原始ATO纳米管记录的0.29 mA / cm 2 相比,氢化ATO(ATO-H)电极的光电流显着提高,为0.65 mA / cm 2 在空气质量1.5全局照明下。入射光子至电流效率的测量结果表明,ATO-H纳米管光电流的增加主要归因于UV区光活性的改善。我们提出电化学氢化诱导的表面氧空位有助于实质上增强的电导率和光活性。

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