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钼(V)配合物[Mo(O)Cl3dppe]的磁圆二色光谱:多定域激发双重态的 C 末端符号和强度。

Magnetic circular dichroism spectrum of the molybdenum(V) complex [Mo(O)Cl3dppe]: C-term signs and intensities for multideterminant excited doublet states.

机构信息

Institut für Anorganische Chemie, Christian-Albrechts-Universität zu Kiel, D-24118 Kiel, Germany.

出版信息

Inorg Chem. 2012 May 21;51(10):5748-63. doi: 10.1021/ic300201t. Epub 2012 May 1.

Abstract

The molybdenum(V) complex [Mo(O)Cl(3)dppe] [dppe = 1,2-bis(diphenylphosphino)ethane] is considered as a model system for a combined study of the electronic structure using UV/vis absorption and magnetic circular dichroism (MCD) spectroscopy. In order to determine the signs and MCD C-term intensities of the chlorido → molybdenum charge-transfer transitions, it is necessary to take the splitting of the excited doublet states into sing-doublet and trip-doublet states into account. While transitions to the sing-doublet states are electric-dipole-allowed, those to the trip-doublet states are electric-dipole-forbidden. As spin-orbit coupling within the manifold of sing-doublet states vanishes, configuration interaction between the sing-doublet and trip-doublet states is required to generate the MCD C-term intensity. The most prominent feature in the MCD spectrum of [Mo(O)Cl(3)dppe] is a "double pseudo-A term", which consists of two corresponding pseudo-A terms centered at 27000 and 32500 cm(-1). These are assigned to the ligand-to-metal charge-transfer transitions from the p(π) orbitals of the equatorial chlorido ligands to the Mo d(yz) and d(xz) orbitals. On the basis of the theoretical expressions developed by Neese and Solomon (Inorg. Chem. 1999, 38, 1847-1865), a general treatment of the MCD C-term intensity of these transitions is presented that explicitly considers the multideterminant character of the excited states. The individual MCD signs are determined from the corresponding transition densities derived from the calculated molecular orbitals of the title complex (BP86/LANL2DZ).

摘要

钼(V)配合物[Mo(O)Cl(3)dppe](dppe=1,2-双(二苯基膦)乙烷)被认为是研究电子结构的模型体系,可结合使用紫外/可见吸收和磁圆二色性(MCD)光谱进行研究。为了确定氯代物→钼荷移跃迁的符号和 MCD C 项强度,有必要考虑到激发双重态的分裂为单重-双重态和三重-双重态。虽然跃迁到单重-双重态是电偶极允许的,但跃迁到三重-双重态是电偶极禁止的。由于单重-双重态中的自旋轨道耦合消失,因此需要在单重-双重态和三重-双重态之间进行组态相互作用,以产生 MCD C 项强度。[Mo(O)Cl(3)dppe]的 MCD 光谱中最显著的特征是一个“双伪 A 项”,它由两个对应于 27000 和 32500 cm(-1)的伪 A 项组成。这些分配给配体到金属的电荷转移跃迁,来自赤道氯代配体的 p(π)轨道到 Mo d(yz)和 d(xz)轨道。基于 Neese 和 Solomon 提出的理论表达式(Inorg. Chem. 1999, 38, 1847-1865),本文提出了一种用于处理这些跃迁的 MCD C 项强度的通用方法,该方法明确考虑了激发态的多行列式特征。通过从标题配合物的计算分子轨道(BP86/LANL2DZ)中得出的相应跃迁密度,确定了各个 MCD 符号。

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