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为何六溴二喹啉主体优先包含小的芳香烃客体。

Why a hexabromodiquinoline host preferentially includes small aromatic hydrocarbon guests.

作者信息

Noman A, Rahman M M, Bishop Roger, Craig Donald C, Scudder Marcia L

机构信息

School of Chemical Sciences, University of New South Wales, UNSW Sydney NSW 2052, Australia.

出版信息

Org Biomol Chem. 2003 Apr 21;1(8):1435-41. doi: 10.1039/b300248a.

Abstract

The preparation and properties of the new hexabromodiquinoline derivative 4 are described. This lattice inclusion host shows a strong preference for trapping small aromatic hydrocarbons. The X-ray crystal structures of the benzene, toluene, o-xylene, and p-xylene compounds are reported, and are analysed from a crystal engineering perspective. Crystallisation of 4 from the dual-nature solvent trifluoromethylbenzene yields the solvent-free material. Comparison of the parent crystal structure with those of its inclusion compounds reveals why inclusion of aromatic hydrocarbon guests is such a favoured process. The high concentration of Br...Br interactions in the structure of pure 4 is diluted and increasingly replaced by aromatic offset face-face (OFF) and aromatic edge-face (EF) interactions in the inclusion compounds, and this results in better lattice packing energies. For toluene, o-xylene, and p-xylene the host-guest ratio is 1:1. Inclusion of the smaller benzene molecule results in a change to 2:3 stoichiometry. This increase in guest content is assisted by replacement of host-host OFF and EF motifs with host-host pi-halogen dimer (PHD) interactions, which provide space for inclusion of the additional guest molecules. These changes result in the most efficient lattice packing of the series for compound (4)2.(benzene)3.

摘要

本文描述了新型六溴二喹啉衍生物4的制备及其性质。这种晶格包合物主体对捕获小分子芳烃表现出强烈的偏好。报道了苯、甲苯、邻二甲苯和对二甲苯化合物的X射线晶体结构,并从晶体工程的角度进行了分析。在具有双重性质的溶剂三氟甲基苯中使4结晶,得到无溶剂材料。将母体晶体结构与其包合物的晶体结构进行比较,揭示了为何包合芳烃客体是一个如此有利的过程。在纯4的结构中高浓度的Br…Br相互作用在包合物中被稀释,并逐渐被芳烃错位面对面(OFF)和芳烃棱-面(EF)相互作用所取代,这导致了更好的晶格堆积能。对于甲苯、邻二甲苯和对二甲苯,主客体比例为1:1。较小的苯分子的包合导致化学计量比变为2:3。主体-主体OFF和EF基序被主体-主体π-卤素二聚体(PHD)相互作用取代,这为额外客体分子的包合提供了空间,从而有助于客体含量的增加。这些变化导致了该系列化合物(4)2.(苯)3的最有效晶格堆积。

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