Begato Federico, Licini Giulia, Zonta Cristiano
Department of Chemical Sciences, University of Padova via Marzolo 1 35131 Padova Italy
Chem Sci. 2023 Jul 4;14(30):8147-8151. doi: 10.1039/d3sc01368e. eCollection 2023 Aug 2.
Taking inspiration from Nature, where (bio)molecular geometry variations are exploited to tune a large variety of functions, supramolecular chemistry has continuously developed novel systems in which, as a consequence of a specific stimulus, structural changes occur. Among the different architectures, supramolecular cages have been continuously investigated for their capability to act as functional hosts where guests can be released in a controlled fashion. In this paper, a novel methodology based on the use of phenanthrenequinone is applied to selectively change the binding properties of a tris(2-pyridylmethyl)amine TPMA-based cage. In particular, subcomponent substitution has been used to change structural cage features thus controlling the inclusion ratio of competing guests differing in size or chirality.
受自然界的启发,在自然界中(生物)分子几何结构的变化被用于调节各种各样的功能,超分子化学不断开发新的体系,在这些体系中,由于特定的刺激,会发生结构变化。在不同的结构中,超分子笼因其能够作为功能性主体,使客体以可控方式释放的能力而不断受到研究。在本文中,一种基于使用菲醌的新方法被应用于选择性地改变基于三(2 - 吡啶甲基)胺(TPMA)的笼的结合特性。特别是,子组件取代已被用于改变笼的结构特征,从而控制大小或手性不同的竞争客体的包合率。