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五配位(3)MC态在钌(II)配合物中硫醚配体光解效率上的关键作用:一项理论机理研究

Pivotal Role of a Pentacoordinate (3)MC State on the Photocleavage Efficiency of a Thioether Ligand in Ruthenium(II) Complexes: A Theoretical Mechanistic Study.

作者信息

Göttle Adrien J, Alary Fabienne, Boggio-Pasqua Martial, Dixon Isabelle M, Heully Jean-Louis, Bahreman Azadeh, Askes Sven H C, Bonnet Sylvestre

机构信息

Laboratoire de Chimie et Physique Quantiques, UMR 5626, IRSAMC, CNRS et Université de Toulouse , 118 route de Narbonne, 31062 Toulouse, France.

Leiden Institute of Chemistry, Leiden University , Einsteinweg 55, 2333 CC Leiden, The Netherlands.

出版信息

Inorg Chem. 2016 May 2;55(9):4448-56. doi: 10.1021/acs.inorgchem.6b00268. Epub 2016 Apr 7.

Abstract

A mechanistic study of the photocleavage of the methylthioethanol ligand (Hmte) in the series of ruthenium complexes Ru(tpy)(N-N)(Hmte) (tpy = 2,2':6',2″-terpyridine, N-N = bpy (2,2'-bipyridine), biq (2,2'-biquinoline), dcbpy (6,6'-dichloro-2,2'-bipyridine), dmbpy (6,6'-dimethyl-2,2'-bipyridine)) was performed using density functional theory. These studies reveal the decisive role of two quasi-degenerate triplet metal-centered states, denoted (3)MChexa and (3)MCpenta, on the lowest triplet potential energy surface. It also shows how the population of the specific pentacoordinate (3)MCpenta state, characterized by a geometry more accessible for the attack of a solvent molecule, is a key step for the efficiency of the photosubstitution reaction. The difference in the photosubstitution quantum yields experimentally observed for this series of complexes (from φ = 0.022 for N-N = bpy up to φ = 0.30 for N-N = dmbpy) is rationalized by the existence of this (3)MCpenta photoreactive state and by the different topologies of the triplet excited-state potential energy surfaces, rather than by the sole steric properties of these polypyridinyl ligands.

摘要

采用密度泛函理论对钌配合物系列Ru(tpy)(N-N)(Hmte)(tpy = 2,2':6',2″-三联吡啶,N-N = bpy(2,2'-联吡啶)、biq(2,2'-联喹啉)、dcbpy(6,6'-二氯-2,2'-联吡啶)、dmbpy(6,6'-二甲基-2,2'-联吡啶))中甲基硫代乙醇配体(Hmte)的光裂解进行了机理研究。这些研究揭示了两个准简并的以金属为中心的三重态,即(3)MChexa和(3)MCpenta,在最低三重态势能面上的决定性作用。研究还表明,具有更易被溶剂分子攻击的几何结构特征的特定五配位(3)MCpenta态的占据情况,是光取代反应效率的关键步骤。该系列配合物实验观察到的光取代量子产率差异(从N-N = bpy时的φ = 0.022到N-N = dmbpy时的φ = 0.30),可通过这个(3)MCpenta光反应态的存在以及三重激发态势能面的不同拓扑结构来解释,而不仅仅是由这些聚吡啶基配体的空间位阻性质来解释。

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