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5f(U、Np、Pu)、5d(W、Re、Os)和4d(Mo、Tc、Ru)元素的[M2X8]2-(X = Cl、Br)配合物中金属-金属键的能量分解分析。

Energy decomposition analysis of metal-metal bonding in [M2X8]2- (X=Cl, br) complexes of 5f (U, Np, Pu), 5d (W, Re, Os), and 4d (Mo, Tc, Ru) elements.

作者信息

Cavigliasso German, Kaltsoyannis Nikolas

机构信息

Department of Chemistry, Faculty of Science, Australian National University, Canberra ACT 0200, Australia.

出版信息

Inorg Chem. 2007 Apr 30;46(9):3557-65. doi: 10.1021/ic0623260. Epub 2007 Mar 24.

Abstract

The electronic structures of a series of [M2X8]2- (X=Cl, Br) complexes involving 5f (U, Np, Pu), 5d (W, Re, Os), and 4d (Mo, Tc, Ru) elements have been calculated using density functional theory, and an energy decomposition approach has been used to carry out a detailed analysis of the metal-metal interactions. The energy decomposition analysis involves contributions from orbital interactions (mixing of occupied and unoccupied orbitals), electrostatic effects (Coulombic attraction and repulsion), and Pauli repulsion (associated with four-electron two-orbital interactions). As previously observed for Mo, W, and U M2X6 species, the general results suggest that the overall metal-metal interaction is considerably weaker or unfavorable in the actinide systems relative to the d-block analogues, as a consequence of a significantly more destabilizing contribution from the combined Pauli and electrostatic (prerelaxation) effects. Although the orbital-mixing (postrelaxation) contribution to the total bonding energy is predicted to be larger in the actinide complexes, this is not sufficiently strong to compensate for the comparatively greater destabilization originating from the Pauli-plus-electrostatic effects. A generally weak electrostatic contribution accounts for the large prerelaxation destabilization in the f-block systems, and ultimately for the weak or unfavorable nature of metal-metal bonding between the actinide elements. There is a greater variation in the energy decomposition results across the [M2Cl8]2- series for the actinide than for the d-block elements, both in the general behavior and in some particular properties.

摘要

利用密度泛函理论计算了一系列包含5f(U、Np、Pu)、5d(W、Re、Os)和4d(Mo、Tc、Ru)元素的[M₂X₈]²⁻(X = Cl、Br)配合物的电子结构,并采用能量分解方法对金属-金属相互作用进行了详细分析。能量分解分析涉及轨道相互作用(占据和未占据轨道的混合)、静电效应(库仑吸引和排斥)以及泡利排斥(与四电子双轨道相互作用相关)的贡献。正如之前在Mo、W和U的M₂X₆物种中观察到的那样,总体结果表明,由于泡利和静电(预弛豫)效应的显著更大的去稳定化贡献,相对于d族类似物,锕系元素体系中的整体金属-金属相互作用明显较弱或不利。尽管预计轨道混合(后弛豫)对总键能的贡献在锕系配合物中更大,但这不足以补偿来自泡利加静电效应的相对更大的去稳定化。一般较弱的静电贡献导致了f族体系中较大的预弛豫去稳定化,最终导致了锕系元素之间金属-金属键的弱或不利性质。在[M₂Cl₈]²⁻系列中,锕系元素的能量分解结果在一般行为和一些特定性质方面的变化都比d族元素更大。

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