Shin Donghan, Jung YounJoon
Seoul National University, 1, Gwanak-ro, Gwanak-gu, Seoul, Republic of Korea.
Phys Chem Chem Phys. 2022 Nov 2;24(42):25740-25752. doi: 10.1039/d2cp03244a.
It is necessary to quantitatively determine substituent effects to accurately elucidate reaction mechanisms in the field of organic chemistry. This paper reports that the molecular electrostatic potential (MESP) can be used as a general and versatile measure for the substituent effects in various chemical reactions by performing extensive density functional theory (DFT) calculations for more than 400 molecules, followed by statistical analyses. We observed a robust and linear correlation between the electrostatic potential and the substituent parameters for various cases of reactive systems, regardless of the DFT functionals, basis sets, and solvation models used. In addition, we statistically analysed the normality of the residuals from the linear regression to demonstrate that strong linear relationships hold universally, which indicates that the electrostatic potential can serve as a physically meaningful quantity for the predictive estimation of substituent effects. In contrast, conventionally used methods based on the charge deviation in the aromatic carbons, as computed using various charge analysis methods, (, Hirshfeld charge analysis) do not demonstrate the statistical normality. Furthermore, we illustrate that MESP can be extensively adopted to strengthen the validity of the linear free energy relationships (LFERs) under various chemical conditions. The results revealed that the MESP shift derived by a functional group on a mono-substituted benzene ring is a strong predictor for the substituent effects on the electronic behaviours in chemical reactions; thus, it can serve as an alternative to other empirical parameters such as the Hammett or Swain-Lupton parameters, or the charge shift.
为了准确阐明有机化学领域的反应机理,有必要对取代基效应进行定量测定。本文报告称,通过对400多个分子进行广泛的密度泛函理论(DFT)计算,然后进行统计分析,分子静电势(MESP)可用作各种化学反应中取代基效应的通用且多功能的度量。我们观察到,无论使用何种DFT泛函、基组和溶剂化模型,对于各种反应体系,静电势与取代基参数之间都存在稳健的线性相关性。此外,我们对线性回归残差的正态性进行了统计分析,以证明强线性关系普遍成立,这表明静电势可作为预测取代基效应的具有物理意义的量。相比之下,使用各种电荷分析方法(如Hirshfeld电荷分析)计算的基于芳族碳中电荷偏差的传统方法并未显示出统计正态性。此外,我们还表明,MESP可被广泛采用以加强各种化学条件下线性自由能关系(LFERs)的有效性。结果表明,单取代苯环上官能团引起的MESP位移是化学反应中取代基对电子行为影响的有力预测指标;因此,它可作为其他经验参数(如哈米特或斯温-卢普顿参数或电荷位移)的替代指标。