取代基
化学
西格玛
计算化学
反应性(心理学)
离子键合
苯
苯衍生物
立体化学
有机化学
离子
量子力学
病理
物理
体外
替代医学
化学合成
医学
生物化学
作者
Kelling J. Donald,Nam Pham,Pranav Ravichandran
标识
DOI:10.1021/acs.jpca.3c05797
摘要
Empirical substituent constants, such as the Hammett parameters, have found important utility in organic and other areas of chemistry. They are useful both in predicting the impact of substitutions on chemical processes and in rationalizing after-the-fact observations on chemical bonding and reactivity. We assess the impact of substitutions on monoiodinated benzene rings and find that the modifications that substituents induce on the electrostatic potentials at the sigma hole on the terminal I center correlate strongly with established trends of common substituents. As an alternative to the experimental procedures involved in obtaining empirically based substituent constants, the computationally determined constants based on induced electrostatic potentials offer a model for quantifying the influence of mono- and polyatomic, neutral, and ionic substituents on their compounds. A partitioning scheme is proposed that allows us to discretely separate σ and π contributions to generate quantitative measures of substituent effects.
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