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基于咪唑环状受体结合氯离子阴离子的超分子相互作用的本质和强度的计算分析。

Computational analysis of the nature and strength of the supramolecular contacts involved in the binding of chloride anions by imidazolium-based cyclic receptors.

机构信息

Institute of Chemistry and Biochemistry, Freie Universität Berlin , Fabeckstr. 36a, 14195 Berlin, Germany.

出版信息

J Phys Chem A. 2012 Sep 13;116(36):9110-5. doi: 10.1021/jp305457w. Epub 2012 Sep 4.

Abstract

The supramolecular bonding contacts driving the recognition of chloride ions by macrocyclic imidazolium-based receptors have been investigated by density functional theory calculations, both in vacuo and in solution (DMSO). This computational study reveals that the most stable host-guest complexes in vacuo and solution are different. While the anion interacts by means of two C-H···Cl(-) hydrogen bonds with the host molecule in vacuo (in a similar manner to that observed in the published single-crystal X-ray structure of the Cl-host complex), four C-H···Cl(-) contacts are clearly present in solution, as observed experimentally by earlier studies. In addition, the computed optimal Cl-host complex in solution confirms that the cavity of the host macrocycle, formed by four aromatic rings, does not includes the anions, which are located outside the cyclic receptor with which they interact through two CPh-H···Cl(-) hydrogen bonds and two unconventional (CIm-H)(+)···X(-) interactions.

摘要

通过密度泛函理论计算,研究了大环咪唑鎓基受体识别氯离子的超分子键合接触,包括在真空中和在 DMSO 溶液中。这项计算研究表明,在真空中和溶液中最稳定的主客体配合物是不同的。虽然阴离子通过两个 C-H···Cl(-)氢键与真空(类似于已发表的 Cl-主体配合物的单晶 X 射线结构中观察到的方式)中的主体分子相互作用,但在溶液中明显存在四个 C-H···Cl(-)接触,如早期研究实验所观察到的那样。此外,计算出的溶液中最佳 Cl-主体配合物证实,由四个芳环形成的主体大环的空腔不包含阴离子,阴离子位于环状受体外部,通过两个 CPh-H···Cl(-)氢键和两个非常规(CIm-H)(+)···X(-)相互作用与它们相互作用。

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