Department of Physical Chemistry, University of Geneva, 30, q. E. Ansermet, 1211 Genève, Switzerland.
Chemistry. 2012 Feb 6;18(6):1737-49. doi: 10.1002/chem.201103096. Epub 2012 Jan 11.
To gain insights into the trends in metal-metal multiple bonding among the Group 6 elements, density functional theory has been employed in combination with multiconfigurational methods (CASSCF and CASPT2) to investigate a selection of bimetallic, multiply bonded compounds. For the compound [Ar-MM-Ar] (Ar=2,6-(C(6)H(5))(2)-C(6)H(3), M=Cr, Mo, W) the effect of the Ar ligand on the M(2) core has been compared with the analogous [Ph-MM-Ph] (Ph=phenyl, M=Cr, Mo, W) compounds. A set of [M(2)(dpa)(4)] (dpa=2,2'-dipyridylamide, M=Cr, Mo, W, U) compounds has also been investigated. All of the compounds studied here show important multiconfigurational behavior. For the Mo(2) and W(2) compounds, the σ(2)π(4)δ(2) configuration dominates the ground-state wavefunction, contributing at least 75%. The Cr(2) compounds show a more nuanced electronic structure, with many configurations contributing to the ground state. For the Cr, Mo, and W compounds the electronic absorption spectra have been studied, combining density functional theory and multireference methods to make absorption feature assignments. In all cases, the main features observed in the visible spectra may be assigned as charge-transfer bands. For all compounds investigated the Mayer bond order (MBO) and the effective bond order (EBO) were calculated by density functional theory and CASSCF methods, respectively. The MBO and EBO values share a similar trend toward higher values at shorter normalized metal-metal bond lengths.
为了深入了解第 6 族元素金属-金属多重键的趋势,我们采用密度泛函理论(DFT)结合多组态方法(CASSCF 和 CASPT2)研究了一系列双金属、多重键合的化合物。对于化合物[Ar-MM-Ar](Ar=2,6-(C(6)H(5))(2)-C(6)H(3),M=Cr、Mo、W),我们比较了 Ar 配体对 M(2)核心的影响与类似的[Ph-MM-Ph](Ph=phenyl,M=Cr、Mo、W)化合物。我们还研究了一系列[M(2)(dpa)(4)](dpa=2,2'-二吡啶酰胺,M=Cr、Mo、W、U)化合物。这里研究的所有化合物都表现出重要的多组态行为。对于 Mo(2)和 W(2)化合物,σ(2)π(4)δ(2)构型主导基态波函数,至少贡献 75%。Cr(2)化合物表现出更为复杂的电子结构,许多构型对基态有贡献。对于 Cr、Mo 和 W 化合物,我们研究了电子吸收光谱,结合密度泛函理论和多参考方法进行吸收特征分配。在所有情况下,在可见光谱中观察到的主要特征都可以分配为电荷转移带。对于所有研究的化合物,通过密度泛函理论和 CASSCF 方法分别计算了 Mayer 键序(MBO)和有效键序(EBO)。MBO 和 EBO 值具有相似的趋势,即随着归一化金属-金属键长的缩短而增加。