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首页> 外文期刊>Journal of Molecular Liquids >Halide anion solvation and recognition by bambusurils: A DFT study
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Halide anion solvation and recognition by bambusurils: A DFT study

机译:卤化物阴离子溶解和担保Bambusurils:DFT研究

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The phenomenon of ion solvation in water has received considerable attention in recent years as the most common species used in the study of aqueous ionic solvation are halide anions and alkali cations. The solvation of the halide ions appears to have great impact on the complex formation processes with the neutral macrocyclic dodecamethylbambus[6]uril host system. Bambusuril host system binds halide ions, preferably in the order I > Br > Cl > F. Various theoretical approaches (different DFT functionals, quite large basis sets, implicit/explicit consideration of the solvent) were employed unsuccessfully in an attempt to overcome the discrepancy between DFT predicted affinities and those experimentally observed in solution (reversed ordering for all or for some of the halide anions). A strategy for calculating the thermodynamic parameters by taking into account two sequential reactions of the guest anion (1) desolvation and (2) inclusion inside the cavity of the host system is applied in our computational study of the dodecamethylbambus[6]uril - halide ions complex formation process. DFT predicted affinities for solvated halide anions are fully in line with available experimental results in solution. (C) 2021 Elsevier B.V. All rights reserved.
机译:近年来,水溶液中的离子溶剂化现象受到了广泛关注,因为研究水溶液中离子溶剂化最常见的物种是卤化物阴离子和碱阳离子。卤化物离子的溶剂化似乎对中性大环十二甲基竹[6]脲主体体系的络合物形成过程有很大影响。Bambusuril宿主系统结合卤化物离子,最好按照I>Br>Cl>F的顺序。为了克服DFT预测的亲和力与溶液中实验观察到的亲和力之间的差异(所有卤化物阴离子或部分卤化物阴离子的顺序相反),各种理论方法(不同的DFT泛函、相当大的基集、对溶剂的隐式/显式考虑)均未成功使用。在我们对十二甲基竹[6]铀卤离子络合物形成过程的计算研究中,我们采用了一种通过考虑客体阴离子(1)去溶剂化和(2)主体系统空腔内包裹体的两个连续反应来计算热力学参数的策略。DFT预测的溶剂化卤化物阴离子的亲和力与溶液中可用的实验结果完全一致。(c)2021爱思唯尔B.V.保留所有权利。

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