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一项用于解释单取代苯衍生物取代基常数的电子性质研究。

An electronic properties investigation to interpret the substituent constants of monosubstituted benzene derivatives.

作者信息

Manassir Mohammad, Pakiari Ali H

机构信息

Chemistry Department, College of Sciences, Shiraz University, Shiraz, 71454, Iran.

Chemistry Department, College of Sciences, Shiraz University, Shiraz, 71454, Iran.

出版信息

J Mol Graph Model. 2019 Nov;92:201-207. doi: 10.1016/j.jmgm.2019.07.017. Epub 2019 Jul 31.

DOI:10.1016/j.jmgm.2019.07.017
PMID:31386947
Abstract

In the present work, the π and π-electronic nature of substitution constants (σ) of the twenty-two monosubstituted benzene derivatives (MSBDs) are estimated in terms of the para-delocalization index (PDI) and total non-Lewis structure (TNLS), respectively. Since these compounds are aromatic, the other descriptors of aromaticity such as nuclear independent chemical shifts and aromatic stabilization energy have been examined. Because of no considerable variation for the π and π-electron delocalization in the ring systems, a very weak correlation has been demonstrated between all aromaticity indices. Also, none of these descriptors has a linear correlation with the values of σ for both electron-donating groups (EDGs) and electron-withdrawing groups (EWGs) in a simultaneous relationship. We now propose the usage of the dipole moments values of molecules, considering their directions, by multiplying the PDI and TNLS values as probes to interpret σ values for benzene and MSBDs since the dipole moment can affect the π and π-electron delocalization. It is interesting to note that there is a remarkable linear correlation between our suggested probes, ±μPDI and ±μTNLS, and σ, σ, and σ/σ for EDGs and EWGs in simultaneous linear relationships. Also, these probes have a relative relationship with Kirkwood and Westheimer equation. Additionally, the regression coefficient between ±μPDI and ±μTNLS is 0.989.

摘要

在本工作中,分别根据对位离域指数(PDI)和总非路易斯结构(TNLS)估算了二十二种单取代苯衍生物(MSBDs)取代常数(σ)的π和π电子性质。由于这些化合物具有芳香性,因此对芳香性的其他描述符,如核独立化学位移和芳香稳定能进行了研究。由于环系统中π和π电子离域没有显著变化,所有芳香性指数之间显示出非常弱的相关性。此外,在同时存在的关系中,这些描述符与供电子基团(EDGs)和吸电子基团(EWGs)的σ值均无线性相关性。鉴于偶极矩会影响π和π电子离域,我们现在建议通过将PDI和TNLS值相乘作为探针来使用分子的偶极矩值,以解释苯和MSBDs的σ值。值得注意的是,在同时存在的线性关系中,我们提出的探针±μPDI和±μTNLS与EDGs和EWGs的σ、σ和σ/σ之间存在显著的线性相关性。此外,这些探针与柯克伍德和韦斯特海默方程存在相对关系。另外,±μPDI和±μTNLS之间的回归系数为0.989。

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