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Aromaticity in metallabenzenes

机译:金属苯中的芳香性

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摘要

The electronic structure and bonding situation in 21 metallabenzenes (metal=Os, Ru, Ir, Rh, Pt, and Pd) were investigated at the DFT level (BP86/TZ2P) by using an energy decomposition analysis (EDA) of the interaction energy between various fragments. The aim of the work is to estimate the strength of the at bonding and the aromatic character of the metallacyclic compounds. Analysis of the electronic structure shows that the metallacyclic moiety has five occupied pi orbitals, two with b(1), symmetry and three with a(2) symmetry, which describe the pi-bonding interactions. The metallabenzenes are thus 10 at-electron systems. This holds for 16-electron and for 18-electron complexes. The pi bonding in the metallabenzenes results mainly from the b(1), contribution, but the a(2) contribution is not negligible. Comparison of the at-bonding strength in the metallacyclic compounds with acylic reference molecules indicates that metallabenzenes should be considered as aromatic compounds whose extra stabilization due to aromatic conjugation is weaker than in benzene. The calculated aromatic stabilization energies (ASEs) are between 8.7 kcal mol(-1) for 13 and 37.6 kcalmol(-1) for 16 which is nearly as aromatic as benzene (ASE =42.5 kcal mol(-1)). The classical metallabenzene model compounds 1 and 4 exhibit intermediate aromaticity with ASE values of 33.4 and 17.6 kcal mol(-1). The greater stability of the 5d complexes compared with the 4d species appears not to be related to the strength of at conjugation. From the data reported here there is no apparent trend or pattern which indicates a correlation between aromatic stabilization and particular ligands, metals, coordination numbers or charge. The lower metal-C5H5 binding energy of the 4d complexes correlates rather with weaker sigma-orbital interactions.
机译:通过使用能量分解分析(EDA)对21种金属甲苯(金属= Os,Ru,Ir,Rh,Pt和Pd)之间的相互作用能进行了电子结构和键合情况的研究各种碎片。这项工作的目的是估计键合强度和金属环化合物的芳香特性。电子结构分析表明,金属环部分具有五个占据的pi轨道,两个具有b(1)对称性,三个具有a(2)对称性,它们描述了pi键相互作用。因此,金属苯是10个电子体系。这适用于16电子和18电子配合物。金属苯中的pi键主要来自b(1)贡献,但a(2)贡献不可忽略。将金属环化合物与酰基参考分子的键合强度进行比较表明,应将金属苯视为芳族化合物,其由于芳族共轭而产生的额外稳定性比苯弱。计算得出的13的芳族稳定能(ASEs)在8.7 kcal mol(-1)和16的37.6 kcalmol(-1)之间,几乎与苯一样芳香(ASE = 42.5 kcal mol(-1))。经典的金属甲苯模型化合物1和4具有中等芳香性,ASE值为33.4和17.6 kcal mol(-1)。与4d物种相比,5d配合物的更大稳定性似乎与结合强度无关。从这里报告的数据来看,没有明显的趋势或模式表明芳族稳定剂与特定的配体,金属,配位数或电荷之间存在相关性。 4d配合物的较低的金属-C5H5结合能与较弱的sigma-轨道相互作用相关。

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