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笼型水合物中氯和溴与水之间的反常卤键相互作用。

The anomalous halogen bonding interactions between chlorine and bromine with water in clathrate hydrates.

机构信息

Department of Chemistry, University of Ottawa, Ottawa, Ontario K1N 6N5, Canada.

出版信息

Faraday Discuss. 2017 Oct 13;203:61-77. doi: 10.1039/c7fd00064b.

DOI:10.1039/c7fd00064b
PMID:28722076
Abstract

Clathrate hydrate phases of Cl and Br guest molecules have been known for about 200 years. The crystal structure of these phases was recently re-determined with high accuracy by single crystal X-ray diffraction. In these structures, the water oxygen-halogen atom distances are determined to be shorter than the sum of the van der Waals radii, which indicates the action of some type of non-covalent interaction between the dihalogens and water molecules. Given that in the hydrate phases both lone pairs of each water oxygen atom are engaged in hydrogen bonding with other water molecules of the lattice, the nature of the oxygen-halogen interactions may not be the standard halogen bonds characterized recently in the solid state materials and enzyme-substrate compounds. The nature of the halogen-water interactions for the Cl and Br molecules in two isolated clathrate hydrate cages has recently been studied with ab initio calculations and Natural Bond Order analysis (Ochoa-Resendiz et al. J. Chem. Phys. 2016, 145, 161104). Here we present the results of ab initio calculations and natural localized molecular orbital analysis for Cl and Br guests in all cage types observed in the cubic structure I and tetragonal structure I clathrate hydrates to characterize the orbital interactions between the dihalogen guests and water. Calculations with isolated cages and cages with one shell of coordinating molecules are considered. The computational analysis is used to understand the nature of the halogen bonding in these materials and to interpret the guest positions in the hydrate cages obtained from the X-ray crystal structures.

摘要

Cl 和 Br 客体分子的包合物水合物相已经存在了大约 200 年。这些相的晶体结构最近通过单晶 X 射线衍射进行了高精度的重新确定。在这些结构中,水的氧-卤原子距离被确定为短于范德华半径之和,这表明二卤化物和水分子之间存在某种类型的非共价相互作用。鉴于在水合物相中,每个水分子的孤对电子都与晶格中的其他水分子参与氢键相互作用,因此氧-卤相互作用的性质可能不是最近在固态材料和酶-底物化合物中所描述的标准卤键。最近,使用从头算计算和自然键轨道分析(Ochoa-Resendiz 等人,J. Chem. Phys. 2016, 145, 161104)研究了 Cl 和 Br 分子在两个孤立的包合物笼中的卤-水相互作用的性质。在这里,我们提出了在立方结构 I 和四方结构 I 包合物水合物中观察到的所有笼型中 Cl 和 Br 客体的从头算计算和自然局域分子轨道分析的结果,以表征二卤化物客体与水之间的轨道相互作用。考虑了孤立笼和带有一层配位分子的笼的计算。计算分析用于理解这些材料中卤键的性质,并解释从 X 射线晶体结构获得的水合物笼中的客体位置。

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