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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Are anion/π interactions actually a case of simple charge-dipole interactions?
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Are anion/π interactions actually a case of simple charge-dipole interactions?

机译:阴离子/π相互作用实际上是简单的电荷-偶极相互作用的情况吗?

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摘要

Substituent effects in Cl~-?C_6H _(6-n)X_n complexes, models for anion/π interactions, have been examined using density functional theory and robust ab initio methods paired with large basis sets. Predicted interaction energies for 83 model Cl~-?C_6H_(6-n)X_n complexes span almost 40 kcal mol~(-1) and show an excellent correlation (r = 0.99) with computed electrostatic potentials. In contrast to prevailing models of anion/π interactions, which rely on substituent-induced changes in the aryl π-system, it is shown that substituent effects in these systems are due mostly to direct interactions between the anion and the substituents. Specifically, interaction energies for Cl~-?C_6H _(6-n)X_n complexes are recovered using a model system in which the substituents are isolated from the aromatic ring and π-resonance effects are impossible. Additionally, accurate potential energy curves for Cl~- interacting with prototypical anion-binding arenes can be qualitatively reproduced by adding a classical charge-dipole interaction to the Cl~-?C_6H_6 interaction potential. In substituted benzenes, binding of anions arises primarily from interactions of the anion with the local dipoles induced by the substituents, not changes in the interaction with the aromatic ring itself. When designing anion-binding motifs, phenyl rings should be viewed as a scaffold upon which appropriate substituents can be placed, because there are no attractive interactions between anions and the aryl π-system of substituted benzenes.
机译:已使用密度泛函理论和鲁棒的从头算方法与大基础集配对,研究了Cl〜-?C_6H _(6-n)X_n配合物(阴离子/π相互作用模型)中的取代基效应。 83种Cl〜-?C_6H_(6-n)X_n配合物的预测相互作用能跨度接近40 kcal mol〜(-1),与计算出的静电势显示出极好的相关性(r = 0.99)。与依赖于取代基在芳基π系统中引起的变化的流行的阴离子/π相互作用模型相反,已表明这些系统中的取代基效应主要归因于阴离子与取代基之间的直接相互作用。具体地,使用其中取代基与芳环分离并且π共振效应是不可能的模型系统回收Cl--C 6 H _(6-n)X_n络合物的相互作用能。另外,通过将经典的电荷-偶极相互作用加到Cl--ΔC_6H_6相互作用势上,可以定性地再现用于Cl-与原型阴离子结合芳烃相互作用的精确势能曲线。在取代的苯中,阴离子的结合主要源于阴离子与取代基引起的局部偶极子的相互作用,而不是与芳环本身相互作用的改变。设计阴离子结合基序时,应将苯环视为可在其上放置适当取代基的支架,因为在阴离子与取代苯的芳基π系统之间没有有吸引力的相互作用。

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