Center for Computational Molecular Science and Technology, School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, Georgia 30332, United States.
J Am Chem Soc. 2011 Aug 31;133(34):13244-7. doi: 10.1021/ja204294q. Epub 2011 Aug 10.
A recent study of substituted face-to-face benzene dimers by Lewis and co-workers [J. Am. Chem. Soc. 2011, 133, 3854-3862] indicated a surprising enhancement of electrostatic interactions for both electron-withdrawing and electron-donating substituents. Here we demonstrate that charge penetration (an attractive electrostatic interaction arising from the overlap of the electron densities on the two monomers) is the cause of this counterintuitive effect. These charge penetration effects are significant at typical π-π interaction distances, and they are not easily described by multipole models. A simple measure of a substituent's electron-donating or electron-withdrawing character, such as the Hammett parameter σ(m), is unlikely to capture subtle charge penetration effects. Indeed, correlation of the relative total energies or relative electrostatic energies with ∑σ(m) breaks down for multiply substituted face-to-face benzene dimers.
最近,Lewis 等人对取代的面对面苯二聚体进行了研究[J. Am. Chem. Soc. 2011, 133, 3854-3862],表明无论是吸电子取代基还是供电子取代基,静电相互作用都有惊人的增强。在这里,我们证明电荷穿透(由于两个单体上的电子密度重叠而产生的吸引力静电相互作用)是这种违反直觉的效应的原因。这些电荷穿透效应在典型的 π-π 相互作用距离上非常显著,并且不容易用多极模型来描述。取代基的供电子或吸电子特征的简单度量,例如 Hammett 参数 σ(m),不太可能捕捉到微妙的电荷穿透效应。事实上,对于多取代的面对面苯二聚体,相对总能量或相对静电能与∑σ(m)的相关性破裂。