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Tunable capsule space: Self-assembly of hemispherical cavitands with hydrogen-bonding linkers

机译:可调节的胶囊空间:半球形空泡分子与氢键连接的自组装体

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Fine and/or drastic tuning of capsule space has been attained by alteration of the hydrogen-bonding linker and/or hemispherical cavitand, respectively. Two molecules of tetracarboxyl-cavitand 1 or tetrakis-(4-carboxyphenyl)-cavitand 2 as a hemisphere and four molecules of 2-aminopyrimidine (2-AP) or tetrahydro-2-pyrimidinone (THP) as an equatorial hydrogen-bonding linker self-assemble into a capsule [(1)(2)center dot(2-AP)(4)] (3), [(1)(2)center dot(THP)(4)] (4), [(2)(2)center dot(2-AP)(4)] (5), or [(2)(2)center dot(THP)(4)] (6), respectively, via 16 hydrogen bonds. These capsules provide isolated nanospace and can encapsulate one guest molecule (7-13) in solution. Each capsule has a different cavity size and shows particular guest selectivity on the competitive encapsulation experiments.
机译:通过分别改变氢键连接基团和/或半球形空洞体,已经实现了胶囊空间的精细和/或剧烈的调节。两个分子的四羧基-cavitand 1或四-(4-羧基苯基)-cavitand 2作为半球,四个分子的2-氨基嘧啶(2-AP)或四氢-2-嘧啶酮(THP)作为赤道氢键连接子-组装成胶囊[(1)(2)中心点(2-AP)(4)](3),[(1)(2)中心点(THP)(4)](4),[(2 )(2)中心点(2-AP)(4)](5)或[(2)(2)中心点(THP)(4)](6),分别通过16个氢键形成。这些胶囊提供了隔离的纳米空间,可以在溶液中包封一个客体分子(7-13)。每个胶囊具有不同的空腔尺寸,并且在竞争性胶囊实验中显示出特定的客体选择性。

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