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用于晶体工程方面的苯并咪唑-苯氧基配体支架内d- 区金属超分子结构的意外结构复杂性

Unexpected structural complexity of d-block metallosupramolecular architectures within the benzimidazole-phenoxo ligand scaffold for crystal engineering aspects.

作者信息

Marcinkowski Dawid, Kubicki Maciej, Consiglio Giuseppe, Hnatejko Zbigniew, Majcher-Fitas Anna M, Podgajny Robert, Patroniak Violetta, Gorczyński Adam

机构信息

Faculty of Chemistry, Adam Mickiewicz University, Uniwersytetu Poznańskiego 8, 61-614, Poznań, Poland.

Dipartimento di Scienze Chimiche, Università di Catania, 95125, Catania, Italy.

出版信息

Sci Rep. 2023 Oct 23;13(1):18055. doi: 10.1038/s41598-023-45109-z.

Abstract

Design of metallosupramolecular materials encompassing more than one kind of supramolecular interaction can become deceptive, but it is necessary to better understand the concept of the controlled formation of supramolecular systems. Herein, we show the structural diversity of the bis-compartmental phenoxo-benzimidazole ligand HL upon self-assembly with variety of d-block metal ions, accounting for factors such as: counterions, pH, solvent and reaction conditions. Solid-state and solution studies show that the parent ligand can accommodate different forms, related to (de)protonation and proton-transfer, resulting in the formation of mono-, bi- or tetrametallic architectures, which was also confirmed with control studies on the new mono-compartmental phenoxo-benzimidazole HL ligand analogue. For the chosen architectures, structural variables such as porous character, magnetic behaviour or luminescence studies were studied to demonstrate how the form of HL ligand affects the final form of the supramolecular architecture and observed properties. Such complex structural variations within the benzimidazole-phenoxo-type ligand have been demonstrated for the first time and this proof-of-concept can be used to integrate these principles in more sophisticated architectures in the future, combining both the benzimidazole and phenoxide subunits. Ultimately, those principles could be utilized for targeted manipulation of properties through molecular tectonics and crystal engineering aspects.

摘要

包含不止一种超分子相互作用的金属超分子材料的设计可能具有欺骗性,但有必要更好地理解超分子体系可控形成的概念。在此,我们展示了双隔室苯氧基苯并咪唑配体HL与多种d区金属离子自组装时的结构多样性,考虑了诸如抗衡离子、pH值、溶剂和反应条件等因素。固态和溶液研究表明,母体配体可以呈现与(去)质子化和质子转移相关的不同形式,从而形成单金属、双金属或四金属结构,对新型单隔室苯氧基苯并咪唑HL配体类似物的对照研究也证实了这一点。对于所选的结构,研究了诸如多孔性质、磁行为或发光研究等结构变量,以证明HL配体的形式如何影响超分子结构的最终形式和观察到的性质。苯并咪唑 - 苯氧基型配体内如此复杂的结构变化首次得到证明,这一概念验证可用于未来将这些原理整合到更复杂的结构中,同时结合苯并咪唑和苯氧化物亚基。最终,这些原理可用于通过分子构造和晶体工程方面对性质进行有针对性的调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b2c/10593740/21845361b52e/41598_2023_45109_Fig1_HTML.jpg

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