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Cavity-based applications of metallo-supramolecular coordination cages (MSCCs)

机译:Cavity-based的应用metallo-supramolecular协调笼子(MSCCs)

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摘要

The microenvironment within self-assembled supramolecular coordination cages (SCCs) inaugurates a new phase of chemistry other than the conventional solid, liquid and gaseous phases. The rational design and ease of synthesis of self-assembled architectures have received tremendous attention mainly in the field of supramolecular chemistry. The structural transition from 2-D metallacycles to 3-D metallacages has led to better encapsulation and enhanced cavity effects, like restricted substrate motion, desolvation of the substrate and covalent binding of the transition stateetc. Metal-mediated self-assemblies, principally known as metallo-supramolecular coordination cages (MSCCs), form a separate class of SCCs with unique chemical phenomena inside the cavities. The aesthetic structural diversity of MSCCs obtained from the rational choice of metal knots and organic linkers renders designable and programmable architectures. This review presents cavity-based applications of these MSCCs, such as molecular recognition and separation, stabilization of reactive species by encapsulation, as drug-delivery systems and as "molecular flasks" to foster reactions with unprecedented results. The objective of this review is to inspire and pave the way for researchers working in this field to design more advanced MSCCs and gain deep insight into cavity effects.
机译:在自组装微环境超分子协调笼子(癌)完成化学以外的新阶段传统的固态、液态和气态阶段。自组装体系结构已经收到主要领域的极大关注超分子化学。从二维metallacycles过渡到三维metallacages导致更好的封装和增强腔效应,比如限制基板运动,反溶剂的衬底和过渡stateetc的共价结合。Metal-mediated自组装,主要是已知的作为metallo-supramolecular协调笼子(MSCCs),形成一个单独的类癌独特的化学现象在蛀牙。MSCCs的审美结构多样性从金属结的理性选择和有机链接器呈现可被识别的可编程架构。这些MSCCs cavity-based的应用,如分子识别和分离,稳定的活性物种封装、药物传输系统,“分子烧瓶”促进反应前所未有的结果。审查是激发和铺平道路研究人员在这个领域设计更多先进的MSCCs和获得腔的深入见解效果。

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