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葫芦脲超分子组装体:可调的物理化学性质及其前景。

Cucurbit[n]uril based supramolecular assemblies: tunable physico-chemical properties and their prospects.

机构信息

Radiation & Photochemistry Division, Bhabha Atomic Research Centre, Mumbai 400 085, India.

出版信息

Chem Commun (Camb). 2011 Sep 28;47(36):9959-71. doi: 10.1039/c1cc12091c. Epub 2011 Jun 28.

Abstract

This Feature Article provides an account of the recent work by our research group (with some reference to relevant work of other groups) on the spectacular physico-chemical properties of cucurbituril-based supramolecular assemblies of chromophoric dyes having technological and biological importance. Simultaneous association of multiple hosts or guests either by cooperative binding or competitive displacement is an applied strategy to construct novel functional assemblies with predesignated characteristics. Here, effort has been made to briefly discuss the diverse photophysical characteristics of several host-guest complexes and the dynamic responses of such molecular assemblies towards external stimulants like metal ions. The detailed experimentation on these assemblies project their applications in the controlled uptake and release of drugs, photofunctional devices, aqueous-based dye lasers, and molecular architectures.

摘要

这篇专题文章介绍了我们研究小组最近的工作,重点介绍了具有重要技术和生物学意义的基于葫芦脲的发色染料超分子组装的壮观物理化学性质(并适当提及了其他小组的相关工作)。通过协同结合或竞争性置换同时结合多个主体或客体是构建具有预定特性的新型功能组装体的应用策略。在这里,我们简要讨论了几种主体-客体配合物的多种光物理特性,以及这些分子组装体对外界刺激(如金属离子)的动态响应。对这些组装体的详细实验研究展示了它们在药物的控制摄取和释放、光功能器件、水基染料激光器和分子结构方面的应用前景。

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