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基于钐阳离子与瓜环配位的新型超分子组装体。

Novel supramolecular assemblies based on coordination of samarium cation to cucurbit[5]uril.

机构信息

Key Laboratory of Macrocyclic and Supramolecular Chemistry of Guizhou Province, Guizhou University, Guiyang 550025, People's Republic of China.

出版信息

Inorg Chem. 2011 Aug 15;50(16):7754-60. doi: 10.1021/ic200902g. Epub 2011 Jul 15.

Abstract

In the present study, we introduce the coordination of samarium-Q[5] systems in the absence and presence of the third species, and the corresponding supramolecular assemblies are dependent upon the addition of the third species. In the absence of the third species, a samarium cation (nitrate salt) coordinates to a Q[5] molecule and forms a molecular bowl; in the presence of an organic molecule (hydroquinone), a one-dimensional polymer of ···Sm-Q[5]-Sm-Q[5]-Sm··· is formed through direct coordination of Sm cation to the portal carbonyl oxygens. In the presence of nickel cations (chloride salt), an infinite 1D supramolecular chain is constructed of samarium/cucurbit[5]uril molecular bowl through ion-dipole interaction and hydrogen binding; in addition, the stacking of the supramolecular chains forms a novel hexagonal open framework. Remarkably, in the presence of copper cations (chloride salt), Q[5]-based hexagonal netting sheets are constructed of 6-Q[5]-ring structures.

摘要

在本研究中,我们介绍了钐-Q[5]系统在不存在和存在第三物种时的配位情况,相应的超分子组装取决于第三物种的添加。在不存在第三物种的情况下,钐阳离子(硝酸盐盐)与 Q[5]分子配位,形成分子碗;在存在有机分子(对苯二酚)时,通过 Sm 阳离子与门户羰基氧的直接配位,形成···Sm-Q[5]-Sm-Q[5]-Sm···的一维聚合物。在镍阳离子(氯化物盐)存在下,通过离子偶极相互作用和氢键构建了由钐/葫芦[5]脲分子碗组成的无限 1D 超分子链;此外,超分子链的堆积形成了一种新型的六方开架结构。值得注意的是,在铜阳离子(氯化物盐)存在下,基于 Q[5]的六方网片由 6-Q[5]-环结构构成。

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