Scharf Lennart T, Andrada Diego M, Frenking Gernot, Gessner Viktoria H
Lehrstuhl für Anorganische Chemie II, Ruhr-Universität Bochum, Universitätsstrasse 150, 44801, Bochum, Germany.
Fachbereich Chemie, Philipps-Universität Marburg, Hans-Meerwein-Strasse, 35032, Marburg, Germany.
Chemistry. 2017 Mar 28;23(18):4422-4434. doi: 10.1002/chem.201605997. Epub 2017 Mar 7.
Quantum chemical calculations have been carried out to study the electronic structure of metalated ylides particularly in comparison to their neutral analogues, the bisylides. A series of compounds of the general composition Ph P-C-L with L being either a neutral or an anionic ligand were analyzed and the impact of the nature of the substituent L and the total charge on the electronics and bonding situation was studied. The charge at the carbon atom as well as the dissociation energies, bond lengths, and Wiberg bond indices strongly depend on the nature of L. Here, not only the charge of the ligand but also the position of the charge within the ligand backbone plays an important role. Independent of the substitution pattern, the NBO analysis reveals the preference of unsymmetrical bonding situations (P=C-L or P-C=L) for almost all compounds. However, Lewis structures with two lone-pair orbitals at the central carbon atom are equally valid for the description of the bonding situation. This is confirmed by the pronounced lone-pair character of the frontier orbitals. Energy decomposition analysis mostly reveals the preference of several bonding situations, mostly with dative and ylidic electron-sharing bonds (e.g., P→C -L). In general, the anionic systems show a higher preference of the ylidic bonding situations compared to the neutral analogues. However, in most of the cases different resonance structures have to be considered for the description of the "real" bonding situation.
已进行量子化学计算以研究金属化叶立德的电子结构,特别是与它们的中性类似物双叶立德进行比较。分析了一系列通式为Ph₂P-C-L的化合物,其中L为中性或阴离子配体,并研究了取代基L的性质和总电荷对电子和键合情况的影响。碳原子上的电荷以及解离能、键长和维伯格键指数强烈依赖于L的性质。在此,不仅配体的电荷,而且电荷在配体主链内的位置也起着重要作用。与取代模式无关,NBO分析表明几乎所有化合物都倾向于不对称键合情况(P=C-L或P-C=L)。然而,对于键合情况的描述,中心碳原子上有两个孤对轨道的路易斯结构同样有效。这由前沿轨道明显的孤对特征所证实。能量分解分析大多表明几种键合情况的偏好,主要是配位键和叶立德型电子共享键(例如,P→C -L)。一般来说,与中性类似物相比,阴离子体系对叶立德型键合情况表现出更高的偏好。然而,在大多数情况下,为了描述“真实”的键合情况,必须考虑不同的共振结构。