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首页> 外文期刊>Organometallics >On the Nature of the Agostic Bond between Metal Centers and beta-Hydrogen Atoms in Alkyl Complexes. An Analysis Based on the Extended Transition State Method and the Natural Orbitals for Chemical Valence Scheme (ETS-NOCV)
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On the Nature of the Agostic Bond between Metal Centers and beta-Hydrogen Atoms in Alkyl Complexes. An Analysis Based on the Extended Transition State Method and the Natural Orbitals for Chemical Valence Scheme (ETS-NOCV)

机译:烷基络合物中金属中心与β-氢原子之间的键合性质。基于扩展过渡态方法和化学价方案的自然轨道的分析(ETS-NOCV)

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We have in the present account analyzed the bonding in beta-agostic alkyl complexes between the carbon chain (R) and the transition metal center. The analysis is based on a recently proposed energy decomposition scheme (ETS-NOCV). We have considered R = Et, n-Pr, i-Pr, n-Bu, attached to the cationic Ni(II)- and Pd(II)-bis-diimine Brookhart complexes (1), the cationic Ti(IV)- or Zr(IV)-metallocenes (2), and the neutral Pd(II) Drent (3) complexes. We find for a given metal that the total M-R dissociation energy -Delta E-total follows the order n-Bu > n-Pr > Et i-Pr. For the same R-group (n-Pr), -Delta E-total for second-row metals is larger than for first-row, as 4d forms better overlaps with the alkyl orbitals than 3d. The major stabilizing contribution to -Delta E-total is the a-bond between the alpha-carbon and the metal. It is augmented by smaller contributions from the C-beta-M sigma-interaction as well as file hyperconjugation of charge into the sigma(CC)* and sigma(CH)* alkyl orbitals. We finally have the beta-agostic contribution from the interaction between a hydrogen atom on the beta-carbon and the metal center. The strength of this bond is rather constant for the cationic species 1 and 2. It can be considered as originating from a (largely) Coulombic interaction between the metal center and the electron pair in the C-beta-H bond, where the density of the pair has been polarized by the positive metal charge. The neutral Drent, system (3) exhibits a weaker beta-agostic interaction, as the net charge on the metal center is less positive.
机译:目前,我们已经分析了碳链(R)和过渡金属中心之间的β-牛磺酸烷基络合物的键合。该分析基于最近提出的能量分解方案(ETS-NOCV)。我们已经考虑了R = Et,n-Pr,i-Pr,n-Bu,它们附着在阳离子Ni(II)-和Pd(II)-双-二亚胺Brookhart络合物(1),阳离子Ti(IV)-或Zr(IV)-茂金属(2)和中性Pd(II)Drent(3)配合物。对于给定的金属,我们发现总的M-R解离能-Delta E-total遵循以下顺序:n-Bu> n-Pr> Et i-Pr。对于相同的R基团(n-Pr),第二行金属的-Delta E-total大于第一行金属的-Delta E-total,因为4d与烷基轨道的交叠比3d更好。对-Delta E-total的主要稳定作用是α-碳与金属之间的a键。 C-beta-M sigma相互作用以及对sigma(CC)*和sigma(CH)*烷基轨道的电荷超共轭作用的贡献较小,从而增强了它的作用。我们最终从β碳上的氢原子与金属中心之间的相互作用中获得了β声级贡献。对于阳离子物种1和2,该键的强度相当恒定。可以将其视为源自C-β-H键中金属中心与电子对之间的(大部分)库仑相互作用,其中该对已被正金属电荷极化。中性的Drent,系统(3)表现出较弱的β-声波相互作用,因为金属中心的净电荷较弱。

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