Zimmer M, Rupp F, Singer P, Walz F, Breher F, Klopper W, Diller R, Gerhards M
Chemistry Department and Research Center Optimas, TU Kaiserslautern, Erwin-Schrödinger-Straße 52, 67663 Kaiserslautern, Germany.
Phys Chem Chem Phys. 2015 Jun 7;17(21):14138-44. doi: 10.1039/c5cp00959f. Epub 2015 May 11.
This paper presents a combined spectroscopic and theoretical analysis of a trinuclear [Pd3{Si(mt(Me))3}2] complex (mt(Me) = methimazole) which has been demonstrated to be a potential catalyst for coupling reactions. It is a highly symmetric model system (D3 in the electronic ground state) for the investigation of electronic states and the structure of polynuclear transition metal complexes. Different time-resolved IR spectroscopic methods covering the femtosecond up to the microsecond range as well as density functional computations are performed to unravel the structure and character of this complex in the electronically excited state. These are the first time-resolved IR studies on a trinuclear Pd complex. Based on the interplay between the computational results and those from the IR studies a (3)A state is identified as the lowest lying triplet state which has C2 symmetry.
本文展示了对一种三核[Pd3{Si(mt(Me))3}2]配合物(mt(Me)=甲巯咪唑)的光谱与理论相结合的分析,该配合物已被证明是一种潜在的偶联反应催化剂。它是用于研究多核过渡金属配合物电子态和结构的高度对称模型体系(电子基态为D3)。采用了涵盖飞秒至微秒范围的不同时间分辨红外光谱方法以及密度泛函计算,以揭示该配合物在电子激发态下的结构和特性。这些是首次对三核钯配合物进行的时间分辨红外研究。基于计算结果与红外研究结果之间的相互作用,确定(3)A态为具有C2对称性的最低三重态。