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Stereochemistry in self-assembled encapsulation complexes: Constellational isomerism

机译:自组装封装复合物中的立体化学:星座异构

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摘要

A previously uncharacterized form of stereochemistry, constella-tional isomerism, is described. The isomerism arises from different arrangements of small-molecule guests in the space of a self-assembled, cylindrical host. The cylindrical host detains three molecules each of CHCl_3,1,2-dichloroethane, or isopropyl chloride. The exchange of guests in and out of the host is slow on the NMR time scale. The dimensions of the capsular host and the sizes of the guests hinder the mobility of molecules inside, and separate NMR signals are seen for guests at the ends of the capsule and those near its center. When two different guests are encapsulated, the spectra show up to four additional species: two sets of constellational isomers. In every pairwise combination of the three guests, all isomers could be identified. The equilibrium distributions of isomers depended on the concentrations of the guests in the bulk solution. The relative stability of the constellational isomers was a function of the polarity of the guest molecule and its ability to interact with the components of the capsule. The different arrangements represent information, and some possibilities for their use in data storage are proposed.
机译:描述了立体化学的先前未表征形式,即星座异构现象。异构现象是由于小分子客体在自组装的圆柱形主体空间中的不同排列而引起的。圆柱形主体包含三个分子,分别为CHCl_3、1,2-二氯乙烷或异丙基氯。在NMR时间尺度上,进出宿主的客人交换很慢。荚膜宿主的大小和客体的大小阻碍了分子在内部的迁移,并且对于位于胶囊末端和中心附近的客体,可以看到单独的NMR信号。当两个不同的客人被封装时,光谱显示出最多四个其他种类:两组星座异构体。在三个客体的每对组合中,所有异构体均可被鉴定。异构体的平衡分布取决于本体溶液中客体的浓度。构象异构体的相对稳定性取决于客体分子的极性及其与胶囊成分相互作用的能力。不同的布置表示信息,并且提出了在数据存储中使用它们的一些可能性。

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