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Supramolecular Structure and Dynamics Special Feature: Functional cavitands: Chemical reactivity in structured environments

机译:超分子结构与动力学特殊功能:功能空泡:结构化环境中的化学反应性

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摘要

Container-shaped molecules provide structured environments that impart geometric bounds on the motions and conformations of smaller molecular occupants. Moreover, they provide “solvation” that is constrained in time and space. When inwardly directed functional groups are present, they can interact chemically with the occupants. Additionally, the potential for reactivity and catalysis is greatly enhanced. Deep cavitands, derived from resorcinarenes, nearly surround smaller molecules and have been one of the most successful platforms for elaboration with functional groups. Derivatives bearing organic and metal-binding functional groups have been shown to affect recognition properties and selectively accelerate diverse reactions. In this review, we examine recent examples of these systems with an emphasis on how and why ordered nanoenvironments impart changes in the properties and reactivity of their occupants.
机译:容器状分子提供结构化的环境,赋予较小的分子占据者运动和构象以几何学上的界限。而且,它们提供了受时间和空间限制的“溶剂化”。当存在向内定向的官能团时,它们可以与占用者发生化学相互作用。另外,大大提高了反应和催化的潜力。源自间苯二酚的深空洞分子几乎包围着较小的分子,并且已成为修饰官能团最成功的平台之一。已显示带有有机和金属结合官能团的衍生物会影响识别性能并选择性地加速各种反应。在这篇综述中,我们研究了这些系统的最新实例,重点放在有序纳米环境如何以及为什么改变其乘员的性质和反应性方面。

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