首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Spontaneously polarized lithium-doped zinc oxide nanowires as photoanodes for electrical water splitting
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Spontaneously polarized lithium-doped zinc oxide nanowires as photoanodes for electrical water splitting

机译:自极化锂掺杂的氧化锌纳米线作为用于电分水的光阳极

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摘要

The key requirement for efficient water splitting is to form suitable band bending at the interface between the semiconductor and electrolyte. One intuitive approach is to directly induce dipoles inside photoelectrochemical cells (PECs) to render band bending favorable for water splitting. Ferroelectric materials, exhibiting spontaneous polarization, can be one promising material choice for this purpose as their polarization domains can be aligned in the desired direction by a poling process. In this work, we employed ferroelectric phase transformed Li-doped ZnO nanowires (NWs) as photoanodes for photoelectrochemical (PEC) water splitting and systematically investigated poling effects. Spontaneous polarization was induced in the NWs in the direction favorable for hole transfer to electrolytes, where the valence band bends upward at the electrolyte interface. Specifically, positively polarized PEC electrodes demonstrated similar to 200% improved STH efficiency compared with negatively polarized ones.
机译:有效水分解的关键要求是在半导体和电解质之间的界面处形成合适的能带弯曲。一种直观的方法是直接在光电化学电池(PEC)中感应出偶极子,从而使能带弯曲有利于水分解。表现出自发极化的铁电材料可以是用于该目的的一种有前途的材料选择,因为它们的极化域可以通过极化过程在期望的方向上对准。在这项工作中,我们采用铁电相变掺杂锂的ZnO纳米线(NWs)作为光阳极进行光电化学(PEC)水分解,并系统地研究极化效应。在NWs中,自发极化沿有利于空穴转移至电解质的方向诱导,在该价态带在电解质界面处向上弯曲。具体而言,与负极性PEC电极相比,正极性PEC电极的STH效率提高了200%。

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