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通过酰腙形成在水中自组装纯有机碗。

Self-Assembly of a Purely Organic Bowl in Water via Acylhydrazone Formation.

机构信息

Department of Chemistry, Zhejiang University, Hangzhou 310027, China.

出版信息

Molecules. 2023 Jan 18;28(3):976. doi: 10.3390/molecules28030976.

Abstract

A bowl-shaped molecule can be self-assembled by condensing a triscationic hexaaldehyde compound and three equiv. of a dihydrazide linkers in pure water. The molecular bowl is thus composed of a triscationic π-electron deficient platform, as well as a hexagonal rim that contains six acylhydrazone functions. When the counteranions are chloride, the solid-state structure reveals that this molecular bowl undergoes dimerization via N-H···Cl hydrogen bonds, forming a cage-like dimer with a huge inner cavity. This molecular bowl can employ its cavity to accommodate a hydrophobic guest, namely 1-adamantanecarboxylic acid in aqueous media.

摘要

一个碗状分子可以通过在纯水中缩合一个三价阳离子六醛化合物和三个当量的二酰肼连接物来自组装。因此,分子碗由一个三价阳离子π-电子缺电子平台以及一个包含六个酰腙官能团的六边形边缘组成。当抗衡阴离子为氯离子时,固态结构表明,这种分子碗通过 N-H···Cl 氢键发生二聚作用,形成具有巨大内腔的笼状二聚体。这种分子碗可以利用其空腔在水介质中容纳疏水性客体,即 1-金刚烷羧酸。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/debf/9921396/03ad1311eec7/molecules-28-00976-g001.jpg

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