首页> 外文期刊>Journal of Organometallic Chemistry >A study on the excitations of ligand-to-metal charge transfer in complexes Cp2MCl2 (Cp = pi-C5H5, M = Ti, Zr, Hf) by density functional theory
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A study on the excitations of ligand-to-metal charge transfer in complexes Cp2MCl2 (Cp = pi-C5H5, M = Ti, Zr, Hf) by density functional theory

机译:用密度泛函理论研究配合物Cp2MCl2(Cp = pi-C5H5,M = Ti,Zr,Hf)中配体到金属电荷转移的激发

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摘要

The excitations of ligand-to-metal charge transfer in the UV-vis spectra of the complexes Cp2MCl2 (CP = pi-C5H5, M = Ti, Zr, Hf) were described with the time-dependent density functional theory and the differential self-consistent-field density functional theory (DeltaSCF-DFT). The nature of the main spectral features was interpreted on the basis of the electronic structure of the complexes. The optimization of the molecular structure for Cp2MCl2 yielded consistent pseudotetrahedral geometries. With the transition from ground state to excited state, the electrons transferred from Cp ligands to the central metals M, accompanied by an increase in the binding length of M-Cl. This transfer process accounted for the first two absorption bands observed experimentally. The energies and oscillator strengths for the low-lying excitations depended strongly on the nature of the central metals. With varying the central metals from Ti, Zr, and to Hf, the energy gap increased between the sets of highest occupied molecular orbitals (HOMOs) and the sets of lowest unoccupied molecular orbitals (LUMOs). This increase was originated from an increment of energy for the LUMO sets that are mainly of d orbital of the metal and a relatively stable energy level of the HOMO sets that are mainly of p-orbital of Cp and Cl ligands. The excitation energies calculated by these methods showed a small difference, which can be well understood by a relativistic effect. The predicted level patterns of the lowest triplet excited states fit well the available phosphorescence data. (C) 2003 Elsevier B.V. All rights reserved. [References: 45]
机译:用时变密度泛函理论和微分自相关描述了配合物Cp2MCl2(CP = pi-C5H5,M = Ti,Zr,Hf)的UV-vis光谱中配体到金属电荷转移的激发。一致场密度泛函理论(DeltaSCF-DFT)。根据配合物的电子结构解释了主要光谱特征的性质。 Cp2MCl2分子结构的优化产生一致的伪四面体几何形状。随着从基态到激发态的跃迁,电子从Cp配体转移到中心金属M,同时伴随着M-Cl结合长度的增加。该转移过程占实验观察到的前两个吸收带。低层激发的能量和振荡器强度在很大程度上取决于中心金属的性质。随着中心金属从Ti,Zr和Hf的变化,能隙在最高占据分子轨道(HOMOs)组和最低未占据分子轨道(LUMOs)组之间增大。这种增加源自主要是金属的d轨道的LUMO组的能量增加和主要是Cp和Cl配体的p轨道的HOMO组的相对稳定的能级。通过这些方法计算出的激发能显示出很小的差异,这可以通过相对论效应很好地理解。最低的三重态激发态的预测能级图很好地拟合了可用的磷光数据。 (C)2003 Elsevier B.V.保留所有权利。 [参考:45]

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