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首页> 外文期刊>E-Journal of Surface Science and Nanotechnology >A Surface Science Approach to Unveiling the TiO2 Photocatalytic Mechanism: Correlation between Photocatalytic Activity and Carrier Lifetime
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A Surface Science Approach to Unveiling the TiO2 Photocatalytic Mechanism: Correlation between Photocatalytic Activity and Carrier Lifetime

机译:揭示TiO 2 光催化机理的表面科学方法:光催化活性与载体寿命之间的关系

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Establishing an accurate view of the photocatalytic mechanism of titanium dioxide (TiO_(2)) has been a challenging task since the discovery of the Honda-Fujishima effect. Despite the great success of catalytic studies in elucidating the chemical and physical aspects of photocatalysis, many questions remain. A surface science approach, which is characterized by the use of atomically well-defined surfaces in precisely controlled environments, is a powerful tool to shed light on the fundamental mechanism, especially the dynamics of photoexcited carriers. In the present contribution, recent progress in photocatalytic research that correlates photocatalytic activity and carrier dynamics on rutile and anatase TiO_(2) is reviewed. A special focus is placed on the lifetime of photoexcited carriers. We present a method to determine the carrier lifetime; pump-probe time-resolved soft X-ray photoelectron spectroscopy, utilizing an ultraviolet laser as a pump light and a synchrotron radiation as a probe light. The carrier lifetime is found to be linearly correlated with the photocatalytic decomposition/desorption rate of acetic acid adsorbed on single-crystal TiO_(2) surfaces. The important role of a potential barrier on the TiO_(2) surface, which influences the carrier lifetime and the photocatalytic activity, is discussed.
机译:自发现本田-藤岛效应以来,建立二氧化钛(TiO_(2))的光催化机理的准确视图一直是一项艰巨的任务。尽管催化研究在阐明光催化的化学和物理方面取得了巨大的成功,但仍然存在许多问题。表面科学方法的特征是在精确控制的环境中使用原子定义明确的表面,这是阐明基本机理(尤其是光激发载流子动力学)的强大工具。在目前的贡献,光催化研究与光催化活性和金红石和锐钛矿型TiO_(2)上的载流子动力学相关的光催化研究的最新进展进行了审查。特别关注光激发载流子的寿命。我们提出一种确定载流子寿命的方法。泵探测时间分辨软X射线光电子能谱,利用紫外激光作为泵浦光,并使用同步加速器辐射作为探测光。发现载流子寿命与单晶TiO_(2)表面上吸附的乙酸的光催化分解/解吸速率线性相关。讨论了势垒在TiO_(2)表面上的重要作用,它影响载流子寿命和光催化活性。

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