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Synergistic Effect of Surface Plasmonic particles and Surface Passivation layer on ZnO Nanorods Array for Improved Photoelectrochemical Water Splitting

机译:表面等离激元粒子和表面钝化层对ZnO纳米棒阵列的协同作用,以改善光电化学水分解

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One-dimensional zinc oxide nanorods array exhibit excellent electron mobility and thus hold great potential as photoanode for photoelelctrochemical water splitting. However, the poor absorption of visible light and the prominent surface recombination hider the performance improvement. In this work, Au nanoparticles and aluminium oxide were deposited onto the surface of ZnO nanorods to improve the PEC performance. The localized surface plasmon resonance of Au NPs could expand the absorption spectrum to visible region. Simultaneously, the surface of passivation with Au NPs and Al2O3 largely suppressed the photogenerated electron-hole recombination. As a result, the optimal solar-to-hydrogen efficiency of ZnO/Au/Al2O3 with 5 cycles was 6.7 times that of pristine ZnO, ascribed to the synergistic effect of SPR and surface passivation. This research reveals that the synergistic effect could be used as an important method to design efficient photoanodes for photoelectrochemical devices.
机译:一维氧化锌纳米棒阵列表现出优异的电子迁移率,因此具有巨大的潜力,可作为光电化学水分解的光阳极。但是,可见光吸收差和表面重组突出,改善了性能。在这项工作中,金纳米颗粒和氧化铝沉积在ZnO纳米棒的表面上,以提高PEC性能。金纳米粒子的局部表面等离振子共振可以将吸收光谱扩展到可见光区域。同时,用Au NPs和Al2O3钝化的表面大大抑制了光生电子-空穴的复合。结果,ZnO / Au / Al2O3的5次循环的最佳太阳能转化效率是原始ZnO的6.7倍,这归因于SPR和表面钝化的协同作用。这项研究表明,协同效应可以用作设计用于光电化学装置的有效光阳极的重要方法。

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