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Time-resolved X-ray absorption spectroscopy for the study of molecular systems relevant for artificial photosynthesis

机译:时间分辨X射线吸收光谱用于研究与人工光合作用相关的分子系统

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摘要

Transition metal coordination compounds have a rich photochemistry and are interesting candidates as both light harvesters (photosensitizers) and catalysts in photocatalytic systems. Knowledge of electronic and molecular structure of excited states of photosensitizers and intermediates of catalysts is a key topic for rational design of systems for artificial photosynthesis. We describe recent advances in the field of time-resolved X-ray absorption spectroscopy that provide information on local structure around metal centers, their orbital structure and oxidation state, and thereby insights into the mechanisms of their photochemical reactions. Photosensitizers with metal centers, multicomponent molecular catalytic systems, and supramolecular model sensitizer-catalysts with two metal centers are used as examples to demonstrate the possibilities of the technique. We overview different experimental methods that can be used to investigate intermediates with lifetimes in the range from hundreds of picoseconds to hundreds of microseconds. Theoretical methods to extract the structural and electronic information from X-ray absorption near edge structure spectroscopy (XANES) are also discussed. (C) 2015 Elsevier B.V. All rights reserved.
机译:过渡金属配位化合物具有丰富的光化学性质,并且作为光催化系统中的光收集器(光敏剂)和催化剂都很有趣。对光敏剂和催化剂中间体的激发态的电子和分子结构的了解是合理设计人工光合作用系统的关键主题。我们描述了时间分辨X射线吸收光谱学领域的最新进展,这些进展提供了有关金属中心周围的局部结构,其轨道结构和氧化态的信息,从而洞察了其光化学反应的机理。以具有金属中心的光敏剂,多组分分子催化体系和具有两个金属中心的超分子模型增感剂催化剂为例来说明该技术的可能性。我们概述了不同的实验方法,这些方法可用于研究寿命在数百皮秒到数百微秒之间的中间体。还讨论了从X射线吸收近边缘结构光谱(XANES)中提取结构和电子信息的理论方法。 (C)2015 Elsevier B.V.保留所有权利。

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