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杯芳烃中的氢键效应

Hydrogen-bonding effects in calix.

作者信息

Cho YL, Rudkevich DM, Shivanyuk A, Rissanen K, Rebek J

机构信息

The Skaggs Institute for Chemical Biology and The Department of Chemistry, The Scripps Research Institute, La Jolla, CA 92037, USA.

出版信息

Chemistry. 2000 Oct 16;6(20):3788-96. doi: 10.1002/1521-3765(20001016)6:20<3788::aid-chem3788>3.0.co;2-y.

Abstract

The synthesis and spectroscopic characterization of self-assembling calix[4]arene based capsules 1a.1a and 1b.1b are described. These compounds feature four urea substituents at the upper rims and four secondary amide fragments at the lower rims that can participate in inter- and intramolecular hydrogen bonding in apolar solution. Communication between the calixarene rims in 1a, b influences the self-assembled cavity's size and shape. Specifically. dimerization results in a perfect cone conformation of the calixarene skeleton in 1a, b and stabilizes a seam of intramolecular amide C=O...H-N hydrogen bonds at the lower rim. This seam is cycloenantiomeric, with either clockwise or counterclockwise arrangements of the head-to-tail amides. Complexation of Na+-cation breaks hydrogen bonds at the lower rim but maintains the capsular assembly. Encapsulation properties of 1a.1a and 1b.1b were studied in nonpolar solvents and their binary mixtures as well as through heterodimerization experiments. The presence of amide groups at the lower rim causes notable differences in the capsule's binding affinities when compared to the corresponding tetraester capsules 1c.1c and 1d.1d. In the monomeric state calixarenes 1a, b are in a pinched cone conformation. The solid state X-ray crystallographic studies with monomeric 1a reveal only two intramolecular C=O...H-N hydrogen bonds between the adjacent amides at the lower rim, and an extensive network of intermolecular hydrogen bonds between urea groups at the upper rim.

摘要

描述了基于杯[4]芳烃的自组装胶囊1a.1a和1b.1b的合成及光谱表征。这些化合物在上缘具有四个脲取代基,在下缘具有四个仲酰胺片段,它们可在非极性溶液中参与分子间和分子内氢键形成。1a、b中杯芳烃边缘之间的相互作用影响自组装腔的大小和形状。具体而言,二聚化导致1a、b中杯芳烃骨架呈完美的锥状构象,并稳定了下缘分子内酰胺C=O...H-N氢键的一条缝。这条缝是环对映体的,头对尾酰胺的排列方式为顺时针或逆时针。Na⁺阳离子的络合作用破坏了下缘的氢键,但维持了胶囊组装。研究了1a.1a和1b.1b在非极性溶剂及其二元混合物中的包封性能,以及通过异二聚化实验进行的研究。与相应的四酯胶囊1c.1c和1d.1d相比,下缘存在酰胺基团导致胶囊的结合亲和力有显著差异。在单体状态下,杯芳烃1a、b呈收缩锥状构象。对单体1a进行的固态X射线晶体学研究表明,下缘相邻酰胺之间仅存在两条分子内C=O...H-N氢键,而上缘脲基团之间存在广泛的分子间氢键网络。

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