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环丙烷真的是 sigma-芳构化典范吗?

Is cyclopropane really the sigma-aromatic paradigm?

机构信息

Department of Chemistry, College of Chemistry and Chemical Engineering, The State Key Laboratory for Physical Chemistry of Solid States, Center for Theoretical Chemistry, Xiamen University, Xiamen, Fujian 361005, China.

出版信息

Chemistry. 2009 Sep 28;15(38):9730-6. doi: 10.1002/chem.200900586.

Abstract

Dewar proposed the sigma-aromaticity concept to explain the seemingly anomalous energetic and magnetic behavior of cyclopropane in 1979. While a detailed, but indirect energetic evaluation in 1986 raised doubts-"There is no need to involve 'sigma-aromaticity',"-other analyses, also indirect, resulted in wide-ranging estimates of the sigma-aromatic stabilization energy. Moreover, the aromatic character of "in-plane", "double", and cyclically delocalized sigma-electron systems now seems well established in many types of molecules. Nevertheless, the most recent analysis of the magnetic properties of cyclopropane (S. Pelloni, P. Lazzeretti, R. Zanasi, J. Phys. Chem. A 2007, 111, 8163-8169) challenged the existence of an induced sigma-ring current, and provided alternative explanations for the abnormal magnetic behavior. Likewise, the present study, which evaluates the sigma-aromatic stabilization of cyclopropane directly for the first time, fails to find evidence for a significant energetic effect. According to ab initio valence bond (VB) computations at the VBSCF/cc-PVTZ level, the sigma-aromatic stabilization energy of cyclopropane is, at most, 3.5 kcal mol(-1) relative to propane, and is close to zero when n-butane is used as reference. Trisilacyclopropane also has very little sigma-aromatic stabilization, compared to Si(3)H(8) (6.3 kcal mol(-1)) and Si(4)H(10) (4.2 kcal mol(-1)). Alternative interpretations of the energetic behavior of cyclopropane (and of cyclobutane, as well as their silicon counterparts) are supported.

摘要

1979 年,Dewar 提出了 sigma-芳香性概念,以解释环丙烷在能量和磁性方面看似异常的行为。尽管 1986 年进行了一项详细但间接的能量评估,提出了“没有必要涉及‘sigma-芳香性’”的质疑,但其他间接分析得出了广泛的 sigma-芳香稳定能估计。此外,“面内”、“双”和周期性离域 sigma 电子体系的芳香性特征在许多类型的分子中似乎已经得到很好的确定。然而,最近对环丙烷磁性性质的分析(S. Pelloni、P. Lazzeretti、R. Zanasi,J. Phys. Chem. A 2007,111,8163-8169)对诱导 sigma-环电流的存在提出了挑战,并为异常磁性行为提供了替代解释。同样,本研究首次直接评估了环丙烷的 sigma-芳香稳定性,未能发现存在显著能量效应的证据。根据 VBSCF/cc-PVTZ 水平的从头算价键(VB)计算,与丙烷相比,环丙烷的 sigma-芳香稳定能最多为 3.5 kcal/mol,而以正丁烷为基准时则接近零。与 Si(3)H(8)(6.3 kcal/mol)和 Si(4)H(10)(4.2 kcal/mol)相比,三硅杂环丙烷的 sigma-芳香稳定化也很小。对环丙烷(以及环丁烷及其硅类似物)的能量行为的替代解释得到了支持。

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