Fachbereich Chemie, Philipps-Universität Marburg, Hans-Meerwein-Strasse, D-35043 Marburg, Germany.
J Phys Chem A. 2010 Aug 26;114(33):8529-35. doi: 10.1021/jp910181q.
The equilibrium geometries and bond dissociation energies of the 14 valence electron (VE) complexes [(PMe(3))(2)M-BeCl(2)], [(PMe(3))(2)M-BeClMe], and [(PMe(3))(2)M-BeMe(2)] with M = Ni, Pd, and Pt have been calculated using density functional theory at the BP86/TZ2P level. The nature of the M-Be bond was analyzed with the NBO charge decomposition analysis and the EDA energy decomposition analysis. The theoretical results predict the equilibrium structures with a T-shaped geometry at the transition metal where the PMe(3) ligands are in the axial positions. The calculated bond dissociation energies show that the M-E bond strengths are in the range of donor-acceptor complexes of divalent beryllium compounds with ammonia. The bond strength decreases when the substituent at beryllium changes from Cl to CH(3). The NBO analysis shows a negative charge at the BeX(2) fragment, which indicates a net charge flow from the transition metal fragment to the beryllium fragment. The energy decomposition analysis of the M-Be bonds suggests two donor-acceptor bonds with sigma and pi symmetry where the transition metal fragment is a double donor with respect to the beryllium ligand. The pi component of the [Ni]-->BeXX' donation is much smaller than the sigma component.
采用密度泛函理论(BP86/TZ2P 水平)计算了具有 M = Ni、Pd 和 Pt 的 14 价电子(VE)配合物[(PMe(3))(2)M-BeCl(2)]、[(PMe(3))(2)M-BeClMe]和[(PMe(3))(2)M-BeMe(2)]的平衡几何形状和键离解能。用 NBO 电荷分解分析和 EDA 能量分解分析分析了 M-Be 键的性质。理论结果预测了在过渡金属处具有 T 形几何形状的平衡结构,其中 PMe(3)配体处于轴向位置。计算的键离解能表明,M-E 键强度在二价铍化合物与氨的给体-受体配合物范围内。当铍上的取代基从 Cl 变为 CH(3)时,键强度降低。NBO 分析表明 BeX(2)片段带负电荷,这表明净电荷从过渡金属片段流向铍片段。M-Be 键的能量分解分析表明存在两个具有 sigma 和 pi 对称性的供体-受体键,其中过渡金属片段相对于铍配体是双供体。[Ni]-->BeXX' 供体的 pi 分量比 sigma 分量小得多。