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Supramolecular transformations within discrete coordination-driven supramolecular architectures

机译:离散的协调驱动的超分子体系结构中的超分子转化

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摘要

In this review, a comprehensive summary of supramolecular transformations within discrete coordination-driven supramolecular architectures, including helices, metallacycles, metallacages, etc., is presented. Recent investigations have demonstrated that coordination-driven self-assembled architectures provide an ideal platform to study supramolecular transformations mainly due to the relatively rigid yet dynamic nature of the coordination bonds. Various stimuli have been extensively employed to trigger the transformation processes of metallosupramolecular architectures, such as solvents, concentration, anions, guests, change in component fractions or chemical compositions, light, and post-modification reactions, which allowed for the formation of new structures with specific properties and functions. Thus, it is believed that supramolecular transformations could serve as another highly efficient approach for generating diverse metallosupramolecular architectures. Classified by the aforementioned various stimuli used to induce the interconversion processes, the emphasis in this review will be on the transformation conditions, structural changes, mechanisms, and the output of specific properties and functions upon induction of structural transformations.
机译:在这篇综述中,提出了在离散的协调驱动的超分子体系结构中的超分子转化的全面总结,包括螺旋,金属环,金属链等。最近的研究表明,协调驱动的自组装体系结构为研究超分子转化提供了理想的平台,这主要归因于协调键的相对刚性但动态的性质。各种刺激已被广泛采用以触发金属超分子结构的转化过程,例如溶剂,浓度,阴离子,客体,组分分数或化学组成的变化,光和改性后反应,从而允许形成新的结构。具体的属性和功能。因此,据信超分子转化可以用作产生各种金属超分子结构的另一种高效方法。通过前面提到的用于诱导相互转化过程的各种刺激进行分类,本文的重点将放在转化条件,结构变化,机理以及诱导结构转化后特定特性和功能的输出。

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