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超快光学和X射线瞬态吸收光谱揭示超分子双核配合物中的激发态电子和能量传递

Excited state electron and energy relays in supramolecular dinuclear complexes revealed by ultrafast optical and X-ray transient absorption spectroscopy.

作者信息

Hayes Dugan, Kohler Lars, Hadt Ryan G, Zhang Xiaoyi, Liu Cunming, Mulfort Karen L, Chen Lin X

机构信息

Chemical Sciences and Engineering Division , Argonne National Laboratory , Argonne , IL 60439 , USA . Email:

X-ray Science Division , Argonne National Laboratory , Argonne , IL 60439 , USA.

出版信息

Chem Sci. 2017 Nov 28;9(4):860-875. doi: 10.1039/c7sc04055e. eCollection 2018 Jan 28.

Abstract

The kinetics of photoinduced electron and energy transfer in a family of tetrapyridophenazine-bridged heteroleptic homo- and heterodinuclear copper(i) bis(phenanthroline)/ruthenium(ii) polypyridyl complexes were studied using ultrafast optical and multi-edge X-ray transient absorption spectroscopies. This work combines the synthesis of heterodinuclear Cu(i)-Ru(ii) analogs of the homodinuclear Cu(i)-Cu(i) targets with spectroscopic analysis and electronic structure calculations to first disentangle the dynamics at individual metal sites by taking advantage of the element and site specificity of X-ray absorption and theoretical methods. The excited state dynamical models developed for the heterodinuclear complexes are then applied to model the more challenging homodinuclear complexes. These results suggest that both intermetallic charge and energy transfer can be observed in an asymmetric dinuclear copper complex in which the ground state redox potentials of the copper sites are offset by only 310 meV. We also demonstrate the ability of several of these complexes to effectively and unidirectionally shuttle energy between different metal centers, a property that could be of great use in the design of broadly absorbing and multifunctional multimetallic photocatalysts. This work provides an important step toward developing both a fundamental conceptual picture and a practical experimental handle with which synthetic chemists, spectroscopists, and theoreticians may collaborate to engineer cheap and efficient photocatalytic materials capable of performing coulombically demanding chemical transformations.

摘要

利用超快光学和多边缘X射线瞬态吸收光谱研究了一族四吡啶菲咯嗪桥联的杂配同核和异核铜(I)双(菲咯啉)/钌(II)多吡啶配合物中光诱导电子和能量转移的动力学。这项工作将同核铜(I)-铜(I)目标的异核铜(I)-钌(II)类似物的合成与光谱分析和电子结构计算相结合,通过利用X射线吸收的元素和位点特异性以及理论方法,首先解开各个金属位点的动力学。然后将为异核配合物开发的激发态动力学模型应用于对更具挑战性的同核配合物进行建模。这些结果表明,在一种不对称双核铜配合物中可以观察到金属间电荷和能量转移,其中铜位点的基态氧化还原电位仅相差310毫伏。我们还证明了其中几种配合物能够在不同金属中心之间有效地单向穿梭能量,这一特性在广泛吸收和多功能多金属光催化剂的设计中可能非常有用。这项工作朝着发展基本概念图景和实用实验方法迈出了重要一步,合成化学家、光谱学家和理论家可以通过这些方法合作设计出能够进行高库仑需求化学转化的廉价高效光催化材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed79/5873173/bd1e8006dadf/c7sc04055e-f1.jpg

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