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Highlighting Recent Crystalline Engineering Aspects of Luminescent Coordination Polymers Based on F-Elements and Ditopic Aliphatic Ligands

发光 镧系元素 配体(生物化学) 晶体工程 羧酸盐 化学 配位复合体 聚合物 晶体结构 金属 材料科学 组合化学 结晶学 立体化学 超分子化学 有机化学 离子 生物化学 受体 光电子学
作者
Richard F. D’Vries,Germán E. Gómez,Javier Ellena
出处
期刊:Molecules [Multidisciplinary Digital Publishing Institute]
卷期号:27 (12): 3830-3830 被引量:3
标识
DOI:10.3390/molecules27123830
摘要

Three principal factors may influence the final structure of coordination polymers (CPs): (i) the nature of the ligand, (ii) the type and coordination number of the metal center, and (iii) the reaction conditions. Further, flexible carboxylate aliphatic ligands have been widely employed as building blocks for designing and synthesizing CPs, resulting in a diverse array of materials with exciting architectures, porosities, dimensionalities, and topologies as well as an increasing number of properties and applications. These ligands show different structural features, such as torsion angles, carbon backbone number, and coordination modes, which affect the desired products and so enable the generation of polymorphs or crystalline phases. Additionally, due to their large coordination numbers, using 4f and 5f metals as coordination centers combined with aliphatic ligands increases the possibility of obtaining different crystal phases. Additionally, by varying the synthetic conditions, we may control the production of a specific solid phase by understanding the thermodynamic and kinetic factors that influence the self-assembly process. This revision highlights the relationship between the structural variety of CPs based on flexible carboxylate aliphatic ligands and f-elements (lanthanide and actinides) and their outstanding luminescent properties such as solid-state emissions, sensing, and photocatalysis. In this sense, we present a structural analysis of the CPs reported with the oxalate ligand, as the one rigid ligand of the family, and other flexible dicarboxylate linkers with -CH2- spacers. Additionally, the nature of the luminescence properties of the 4f or 5f-CPs is analyzed, and finally, we present a novel set of CPs using a glutarate-derived ligand and samarium, with the formula [2,2'-bipyH][Sm(HFG)2 (2,2'-bipy) (H2O)2]•(2,2'-bipy) (α-Sm) and [2,2'-bipyH][Sm(HFG)2 (2,2'-bipy) (H2O)2] (β-Sm).

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