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首页> 外文期刊>International Journal of Molecular Sciences >Reconciling Experiment and Theory in the Use of Aryl-Extended Calix[4]pyrrole Receptors for the Experimental Quantification of Chloride–π Interactions in Solution
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Reconciling Experiment and Theory in the Use of Aryl-Extended Calix[4]pyrrole Receptors for the Experimental Quantification of Chloride–π Interactions in Solution

机译:使用芳基扩展杯[4]吡咯受体进行溶液中氯-π相互作用的实验定量的协调实验和理论

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In this manuscript we consider from a theoretical point of view the recently reported experimental quantification of anion–π interactions (the attractive force between electron deficient aromatic rings and anions) in solution using aryl extended calix[4]pyrrole receptors as model systems. Experimentally, two series of calix[4]pyrrole receptors functionalized, respectively, with two and four aryl rings at the meso positions, were used to assess the strength of chloride–π interactions in acetonitrile solution. As a result of these studies the contribution of each individual chloride–π interaction was quantified to be very small (1 kcal/mol). This result is in contrast with the values derived from most theoretical calculations. Herein we report a theoretical study using high-level density functional theory (DFT) calculations that provides a plausible explanation for the observed disagreement between theory and experiment. The study reveals the existence of molecular interactions between solvent molecules and the aromatic walls of the receptors that strongly modulate the chloride–π interaction. In addition, the obtained theoretical results also suggest that the chloride-calix[4]pyrrole complex used as reference to dissect experimentally the contribution of the chloride–π interactions to the total binding energy for both the two and four-wall aryl-extended calix[4]pyrrole model systems is probably not ideal.
机译:在本手稿中,我们从理论角度考虑了最近报道的使用芳基扩展杯[4]吡咯受体作为模型系统的溶液中阴离子-π相互作用(电子缺陷的芳香环和阴离子之间的吸引力)的实验定量。在实验中,分别使用功能化的两个杯[4]吡咯受体系列,在中位具有两个和四个芳基环来评估乙腈溶液中氯离子-π相互作用的强度。这些研究的结果是,每个单独的氯化物-π相互作用的贡献被量化为非常小(<1 kcal / mol)。该结果与大多数理论计算得出的值相反。本文中,我们报告了使用高级密度泛函理论(DFT)计算的理论研究,该理论研究为观察到的理论与实验之间的分歧提供了合理的解释。这项研究揭示了溶剂分子与受体的芳香壁之间存在强烈相互作用的分子相互作用,该相互作用强烈地调节了氯离子与π的相互作用。此外,获得的理论结果还表明,氯化物-杯[4]吡咯配合物可作为参考,用于实验分析两壁和四壁芳基延伸杯中氯化物-π相互作用对总结合能的贡献。 [4]吡咯模型系统可能不是理想的。

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