Lein Matthias, Frunzke Jan, Frenking Gernot
Fachbereich Chemie, Philipps-Universität Marburg, Hans-Meerwein-Strasse, D-35032 Marburg, Germany.
Inorg Chem. 2003 Apr 21;42(8):2504-11. doi: 10.1021/ic020592h.
Quantum chemical calculations using gradient-corrected DFT at the BP86/TZ2P level of the compounds Ti(eta(5)-E(5))(2)(-) (E = CH, N, P, As, Sb) are reported. The nature of the metal-ligand bonding has been analyzed with an energy decomposition method, and the results are compared with [Fe(eta(5)-E(5))(2)]. The bonding in both series of complexes is more covalent than electrostatic. The energy decomposition analysis shows that the dominant orbital interactions in the negatively charged titanium species come from the (e(2)') Ti --> (eta(5)-E(5))(2)(-) back-donation (delta bonding) while the covalent bonding in the iron complexes come mainly from (e(1)' ') (Cp(-))(2) --> Fe(2+) donation (pi bonding). The nature of the metal-ligand interactions does not change very much for different ligands cyc-E(5) within the two series of compounds. The calculated bond dissociation energies for breaking one metal-ligand bond of the molecules Ti(eta(5)-E(5))(2)(-) shows for E the order P > As > Sb >> N >> CH. The central message of this work is that the complexes Ti(eta(5)-E(5))(2)(-) are delta bonded molecules.
报道了在BP86/TZ2P水平上使用梯度校正密度泛函理论(DFT)对化合物[Ti(η⁵-E⁵)₂]²⁻(E = CH、N、P、As、Sb)进行的量子化学计算。采用能量分解方法分析了金属-配体键的性质,并将结果与[Fe(η⁵-E⁵)₂]进行了比较。这两个系列配合物中的键合比静电作用更具共价性。能量分解分析表明,带负电荷的钛物种中主要的轨道相互作用来自(e₂')Ti→[(η⁵-E⁵)₂]²⁻的反馈键合(δ键),而铁配合物中的共价键主要来自(e₁'')(Cp⁻)₂→Fe²⁺的电子给予(π键)。在这两个系列的化合物中,不同配体环-E⁵的金属-配体相互作用性质变化不大。对于分子[Ti(η⁵-E⁵)₂]²⁻,计算得到的断裂一个金属-配体键的键解离能显示,E的顺序为P > As > Sb >> N >> CH。这项工作的核心信息是,配合物[Ti(η⁵-E⁵)₂]²⁻是δ键合分子。