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通过一种合成的自组装主体对盘状客体进行可逆封装。

Reversible encapsulation of disc-shaped guests by a synthetic, self-assembled host.

作者信息

Grotzfeld R M, Branda N, Rebek J

机构信息

Department of Chemistry, Massachusetts Institute of Technology, Cambridge 02139, USA.

出版信息

Science. 1996 Jan 26;271(5248):487-9. doi: 10.1126/science.271.5248.487.

Abstract

Here, the synthesis of a bowl-shaped molecule is described and evidence of its reversible dimerization by means of hydrogen bonds is presented. The dimer features a flattened spherical cavity of peculiar symmetry and acts as a host for the encapsulation of guest molecules of complementary shape. Encapsulation of aromatic guests in chloroform solution and of cyclohexane in p-xylene solution was demonstrated by nuclear magnetic resonance experiments. The passage of guests into and out of the cavity is slow and occurs on a time scale of hours. The system was used to explore the effects of size, shape, and solvation on molecular recognition coupled with assembly.

摘要

本文描述了一种碗状分子的合成,并给出了其通过氢键进行可逆二聚化的证据。该二聚体具有对称性独特的扁平球形空腔,可作为主体包封形状互补的客体分子。通过核磁共振实验证明了在氯仿溶液中芳香族客体以及在对二甲苯溶液中环己烷的包封情况。客体进出空腔的过程缓慢,时间尺度为小时级。该体系用于探究尺寸、形状和溶剂化作用对分子识别及组装的影响。

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