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Multilevel coordination-driven assembly for metallosupramolecules with hierarchical structures

机译:具有等级结构的Metallosupramulules的多级协调驱动的组件

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Despite recent advances toward understanding metallosupramolecular platforms, structural classification remains a challenge because of the high multiplicity and diversity originating from the variety of three-dimensional binding modes of metal ions and multifunctional ligands. In this review, multilevel coordination-driven assembly and its potential implementation in the analysis of a variety of structurally complicated metallosupramolecules are demonstrated. The classification of coordination-driven structures with their respective hierarchy levels is summarized based on the ability of each structural unit to construct ordered molecular platforms. Multilevel assembly is composed of (i) primary, (ii) secondary, (iii) tertiary, or higher-order assembly. The coordination-driven binding modes should differ by levels in a complex. In particular, tertiary assembly involves the use of predefined, well-organized secondary supramolecules as basic modules to build discrete or polymeric structures. Using the suggested concept, coordination-driven metallosupramolecular platforms can be readily classified depending on their respective hierarchical structures. We expect that this simple analytical approach will provide researchers with a more effective understanding of coordination-driven assembly and facilitate the design of new complexes for specialized applications. (C) 2019 Elsevier B.V. All rights reserved.
机译:尽管最近对Metallosupramular平台进行了进展,但由于源自金属离子和多功能配体的三维结合模式的各种多样性和多样性,结构分类仍然是一个挑战。在本文中,证明了多级协调驱动的组件及其在分析各种结构复杂的金属蛋白分子中的潜在实现。基于每个结构单元构建有序分子平台的能力,总结了具有各自层次水平的协调驱动的结构的分类。多级组件由(i)初级,(ii)二次,(iii)三级或高阶组件组成。协调驱动的绑定模式应在复杂的水平差异。特别地,三级组件涉及使用预定的,有组织的次级超分号作为基本模块,以构建分立或聚合物结构。使用所提出的概念,协调驱动的金属分子平台可以根据其各自的分层结构容易地分类。我们预计这种简单的分析方法将为研究人员提供更有效地理解协调驱动的装配,并促进专门应用的新复合物的设计。 (c)2019 Elsevier B.v.保留所有权利。

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