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通过CH-π相互作用控制的分子平衡中芳族取代基效应的溶剂调制

Solvent Modulation of Aromatic Substituent Effects in Molecular Balances Controlled by CH-π Interactions.

作者信息

Emenike Bright U, Spinelle Ronald A, Rosario Ambar, Shinn David W, Yoo Barney

机构信息

Department of Chemistry, State of University of New York , Old Westbury, New York 11568, United States.

Department of Math and Science, U.S. Merchant Marine Academy , Kings Point, New York 11024, United States.

出版信息

J Phys Chem A. 2018 Feb 1;122(4):909-915. doi: 10.1021/acs.jpca.7b09910. Epub 2018 Jan 23.

Abstract

CH-π aromatic interactions are ubiquitous in nature and are capable of regulating important chemical and biochemical processes. Solvation and aromatic substituent effects are known to perturb the CH-π aromatic interactions. However, the nature by which the two factors influence one another is relatively unexplored. Here we demonstrate experimentally that there is a quantitative correlation between substituent effects in CH-π interactions and the hydrogen-bond acceptor constants of the solvating molecule. The CH-π interaction energies were measured by the conformational study of a series of aryl-substituted molecular balances in which the conformational preferences depended on the relative strengths of the methyl and aryl CH-π interactions in the folded and unfolded states, respectively. Due to the favorable methyl-aromatic interactions, the balances were found to exist predominantly in the folded state. The observed substituent effect in the conformational preferences of the balances was controlled by the explicit solvation/desolvation of the aryl proton. The interpretation of the conformational free energy as a function of substituents and solvation using Hunter's solvation model revealed that a linear relationship exists between the sensitivity of aromatic substituent effects (i.e., the ρ values derived from Hammett plots) and the hydrogen-bond acceptor propensity (β) of the solvent molecule: ρ = 0.06β - 0.04.

摘要

CH-π芳香相互作用在自然界中普遍存在,能够调节重要的化学和生物化学过程。已知溶剂化和芳香取代基效应会扰乱CH-π芳香相互作用。然而,这两个因素相互影响的本质相对尚未得到充分研究。在此,我们通过实验证明,CH-π相互作用中的取代基效应与溶剂化分子的氢键受体常数之间存在定量相关性。通过对一系列芳基取代的分子天平进行构象研究来测量CH-π相互作用能,其中构象偏好分别取决于折叠态和非折叠态中甲基和芳基CH-π相互作用的相对强度。由于有利的甲基-芳香相互作用,发现分子天平主要以折叠态存在。在分子天平构象偏好中观察到的取代基效应受芳基质子的明确溶剂化/去溶剂化控制。使用亨特溶剂化模型将构象自由能解释为取代基和溶剂化的函数,结果表明芳香取代基效应的灵敏度(即从哈米特图得出的ρ值)与溶剂分子的氢键受体倾向(β)之间存在线性关系:ρ = 0.06β - 0.04。

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