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苯并三唑穴醚在水中的键合与组装。

Binding and Assembly of a Benzotriazole Cavitand in Water.

机构信息

Center for Supramolecular Chemistry & Catalysis and Department of Chemistry, College of Science, Shanghai University, 99 Shang-Da Road, Shanghai, 200444, China.

Department of Organic Chemistry, Arrhenius Laboratory, Stockholm University, 10691, Stockholm, Sweden.

出版信息

Angew Chem Int Ed Engl. 2022 Jul 18;61(29):e202205534. doi: 10.1002/anie.202205534. Epub 2022 May 26.

Abstract

A water-soluble cavitand bearing a benzotriazole upper rim was prepared and characterized. It exists as a dimeric velcraplex in D O, but forms host-guest complexes with hydrophobic and amphiphilic guests. Alkanes (C5 to C10), cyclic ketones (C6-C10), cyclic alcohols (C6-C8) and various amphiphilic guests form 1 : 1 cavitand complexes. A cyclic array of hydrogen bonds, bridged by solvent/water (D O) molecules, stabilizes the vase conformation of the complexes. With longer alkanes (C12-C15), symmetrical dialkyl amine, urea and phosphate, 2 : 1 host:guest capsules are formed. Computations indicate that additional waters on the upper rim create a self-complementary hydrogen-bonding pattern for capsule formation.

摘要

一种带有苯并三唑上缘的水溶性笼形化合物被制备并进行了表征。它在 D O 中以二聚 Velcraplex 的形式存在,但可与疏水和亲脂性客体形成主客体配合物。烷烃(C5 至 C10)、环酮(C6-C10)、环醇(C6-C8)和各种两亲性客体形成 1:1 笼形配合物。氢键的环状排列由溶剂/水(D O)分子桥接,稳定了配合物的花瓶构象。对于更长的烷烃(C12-C15)、对称二烷基胺、尿素和磷酸盐,形成 2:1 主体:客体胶囊。计算表明,在上缘增加的水为胶囊形成创造了自互补的氢键模式。

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