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InP nanopore arrays for photoelectrochemical hydrogen generation

机译:InP纳米孔阵列用于光电化学制氢

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摘要

We report a facile and large-scale fabrication of highly ordered one-dimensional (1D) indium phosphide (InP) nanopore arrays (NPs) and their application as photoelectrodes for photoelectrochemical (PEC) hydrogen production. These InP NPs exhibit superior PEC performance due to their excellent light-trapping characteristics, high-quality 1D conducting channels and large surface areas. The photocurrent density of optimized InP NPs is 8.9 times higher than that of planar counterpart at an applied potential of +0.3 V versus RHE under AM 1.5G illumination (100 mW cm(-2)). In addition, the onset potential of InP NPs exhibits 105 mV of cathodic shift relative to planar control. The superior performance of the nanoporous samples is further explained by Mott-Schottky and electrochemical impedance spectroscopy ananlysis.
机译:我们报告了高度有序的一维(1D)磷化铟(InP)纳米孔阵列(NPs)的便捷和大规模制造及其作为光电化学用于光电化学(PEC)氢气生产的应用。这些InP NP具有出色的光捕获特性,高质量的1D导电通道和较大的表面积,因此具有出色的PEC性能。在AM 1.5G光照(100 mW cm(-2))下,优化的InP NP在+0.3 V的施加电势下的光电流密度比RHE高8.9倍,高于RHE。另外,相对于平面控制,InP NPs的起始电位表现出105 mV的阴极位移。纳米多孔样品的优越性能通过Mott-Schottky和电化学阻抗谱分析进一步解释。

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