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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Impact of oxygen vacancies on TiO2 charge carrier transfer for photoelectrochemical water splitting
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Impact of oxygen vacancies on TiO2 charge carrier transfer for photoelectrochemical water splitting

机译:氧气职位空缺对光电化学水分裂的TiO2电荷载流量的影响

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摘要

Oxygen vacancies are recognized as the most prevalent defects in oxide materials. The effect of oxygen vacancies on the physicochemical properties of metal oxide semiconductors has attracted considerable attention in the photocatalysis field. But so far, the impact of oxygen vacancies on charge carrier transfer for photoelectrochemical water splitting has been unclear. In this work, TiO2 photoanodes with various oxygen vacancy concentrations were studied as metal oxide models to clarify the impact of oxygen vacancies on charge carrier transfer behaviors. The potential distribution and electrochemical impedance spectroscopy results indicate that the oxygen vacancies facilitate charge carrier diffusion in TiO2, but are disadvantageous for the charge carrier drift in the TiO2/electrolyte interface. The TiO2-400 photoanode with intermediate oxygen vacancy concentration exhibits the highest photocurrent density. It is expected that this work will provide reference to design and fabricate oxide semiconductors as photoanodes for higher charge carrier utilization in the field of solar-to-chemical energy conversion.
机译:氧气空位被认为是氧化物材料中最普遍的缺陷。氧空位对金属氧化物半导体物理化学性质的影响引起了光催化区域的显着关注。但到目前为止,氧气空位对光电化学水分裂的电荷载流子的影响尚不清楚。在这项工作中,研究了具有各种氧空位浓度的TiO2光电仪作为金属氧化物模型,以阐明氧空位对电荷载体转移行为的影响。电位分布和电化学阻抗谱结果表明氧空位促进TiO 2中的电荷载流子扩散,但对于TiO 2 /电解质界面中的电荷载流漂移是不利的。具有中间氧空位浓度的TiO2-400 PhotoNode表现出最高的光电流密度。预计这项工作将提供参考设计和制造氧化物半导体作为光阳极,用于太阳能化能转换领域的较高电荷载流子利用。

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