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发射光谱法用于探究聚嗪桥连的钌(II)、铑(III)超分子配合物中的光致分子内电子转移

Emission Spectroscopy as a Probe into Photoinduced Intramolecular Electron Transfer in Polyazine Bridged Ru(II),Rh(III) Supramolecular Complexes.

作者信息

White Travis A, Arachchige Shamindri M, Sedai Baburam, Brewer Karen J

机构信息

Department of Chemistry, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061-0212, USA.

出版信息

Materials (Basel). 2010 Aug 11;3(8):4328-4354. doi: 10.3390/ma3084328.

Abstract

Steady-state and time-resolved emission spectroscopy are valuable tools to probe photochemical processes of metal-ligand, coordination complexes. Ru(II) polyazine light absorbers are efficient light harvesters absorbing in the UV and visible with emissive ³MLCT excited states known to undergo excited state energy and electron transfer. Changes in emission intensity, energy or band-shape, as well as excited state lifetime, provide insight into excited state dynamics. Photophysical processes such as intramolecular electron transfer between electron donor and electron acceptor sub-units may be investigated using these methods. This review investigates the use of steady-state and time-resolved emission spectroscopy to measure excited state intramolecular electron transfer in polyazine bridged Ru(II),Rh(III) supramolecular complexes. Intramolecular electron transfer in these systems provides for conversion of the emissive ³MLCT (metal-to-ligand charge transfer) excited state to a non-emissive, but potentially photoreactive, ³MMCT (metal-to-metal charge transfer) excited state. The details of the photophysics of Ru(II),Rh(III) and Ru(II),Rh(III),Ru(II) systems as probed by steady-state and time-resolved emission spectroscopy will be highlighted.

摘要

稳态和时间分辨发射光谱是探测金属-配体配位络合物光化学过程的重要工具。钌(II)多嗪光吸收剂是高效的光捕获剂,在紫外和可见光区域吸收,其发射性的³MLCT激发态已知会发生激发态能量和电子转移。发射强度、能量或谱带形状的变化以及激发态寿命,都能提供有关激发态动力学的信息。诸如电子供体和电子受体亚单元之间的分子内电子转移等光物理过程,可以使用这些方法进行研究。本综述研究了利用稳态和时间分辨发射光谱来测量多嗪桥连的钌(II)、铑(III)超分子络合物中的激发态分子内电子转移。这些体系中的分子内电子转移使得发射性的³MLCT(金属到配体电荷转移)激发态转化为非发射性但可能具有光反应性的³MMCT(金属到金属电荷转移)激发态。将重点介绍通过稳态和时间分辨发射光谱探测的钌(II)、铑(III)以及钌(II)、铑(III)、钌(II)体系的光物理细节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5913/5445835/338dc69f1ff0/materials-03-04328-g001.jpg

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