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2D ZnIn2S4 Nanosheet/ID TiO2 Nanorod Heterostructure Arrays for Improved Photoelectrochemical Water Splitting

机译:二维ZnIn2S4纳米片/ ID TiO2纳米棒异质结构阵列,用于改善光电化学水分解

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We report the fabrication of 2D ZnIn2S4 nanosheet/1D TiO2 nanorod heterojunction arrays by a facile hydrothermal process and their use as photoelectrodes in a photoelectrochemical (PEC) cell for high-performance solar water splitting. The morphology, microstructure, and phase of pristine TiO2 and 2D ZnIn2S4 nanosheet/lD TiO2 nanorod heterojunction arrays were characterized in detail. PEC measurements showed that 2D/1D heterojunction arrays offered enhanced photocurrent density (3 times higher than that of pristine TiO2), negatively shifted onset potential from 0.05 to —0.53 V, and high light on/off cycle stability. Electrochemical impedance investigation attested to a significant improvement of the interface electron transfer kinetics in this heterojunction, thus facilitating electron-hole separation, transfer, and collection, which resulted in enhanced PEC properties.
机译:我们报告了通过方便的水热工艺制造2D ZnIn2S4纳米片/ 1D TiO2纳米棒异质结阵列,以及它们在光电化学(PEC)电池中作为光电极用于高性能太阳能水分解的用途。详细描述了原始TiO2和2D ZnIn2S4纳米片/ 1D TiO2纳米棒异质结阵列的形貌,微观结构和相。 PEC测量显示2D / 1D异质结阵列可提供增强的光电流密度(比原始TiO2高3倍),起始电势从0.05负移至-0.53 V,并且具有高光通/断周期稳定性。电化学阻抗研究证明了该异质结中界面电子转移动力学的显着改善,从而促进了电子-空穴的分离,转移和收集,从而增强了PEC性能。

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