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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Review of surface photovoltage spectra of nano-sized semiconductor and its applications in heterogeneous photocatalysis
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Review of surface photovoltage spectra of nano-sized semiconductor and its applications in heterogeneous photocatalysis

机译:纳米半导体表面光电压谱的研究及其在非均相光催化中的应用

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摘要

Heterogeneous photocatalysis is a promising technique valuable for environmental purification. Nano-sized semiconductors such as ZnO and TiO2, which is one of the most basic functional materials, have emerged as effective photocatalyst materials. The surface photovoltage spectra (SPS) can be an effective method for quickly evaluating the photocatalytic activity of semiconductor materials since it can provide a rapid, non-destructive monitor of the semiconductor surface properties such as surface band bending, surface and bulk carrier recombination and surface states, mainly showing the carrier separation and transfer behavior with the aid of light, especially the electric-field-induced surface photovoltage spectra (EFISPS), in which SPS is combined with the electric-field-modified technique. In this review, the basic principles, measurement and applications of the SPS and EFISPS are mainly discussed together with some fundamental aspects like the electric properties of semiconductor surface and the principle of electric field effect. In particular, the applications of SPS to nano-sized semiconductors such as ZnO and TiO2 in heterogeneous photocatalysis are emphasized, which involve mainly evaluating the photocatalytic activity by analyzing semiconductor surface properties such as the separation efficiency of photoinduced carriers under illumination by the SPS measurement, highlighting our own contributions. The results show that the weaker the surface photovoltage signal is, the higher the photocatalytic activity is in the case of nano-sized semiconductor photocatalysts. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 53]
机译:非均相光催化是一种对环境净化有价值的有前途的技术。 ZnO和TiO2等纳米级半导体是最基本的功能材料之一,已成为有效的光催化剂材料。表面光电压谱(SPS)可以是一种快速评估半导体材料光催化活性的有效方法,因为它可以提供一种快速,无损的半导体表面特性监测器,例如表面带弯曲,表面和体载流子复合以及表面态,主要显示了借助光的载流子分离和转移行为,特别是电场诱导的表面光电压谱(EFISPS),其中SPS与电场改进技术结合在一起。在这篇综述中,主要讨论了SPS和EFISPS的基本原理,测量和应用,以及一些基本方面,例如半导体表面的电特性和电场效应原理。特别强调了SPS在异质光催化中对ZnO和TiO2等纳米尺寸半导体的应用,主要涉及通过分析半导体表面特性(例如通过SPS测量在光照下光致载流子的分离效率)来评估光催化活性,突出我们自己的贡献。结果表明,在纳米尺寸的半导体光催化剂的情况下,表面光电压信号越弱,光催化活性越高。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:53]

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