首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >1D and 2D Zn-Ln coordination polymers based on compartment compounds: [ZnLn(L)(NO3)(2)(4-Ppa)(EtOH)] and [ZnLn(L)(NO3)(2)(4-pca) (H2O)] (Ln = Eu, Tb; H-2 L=1,3-bis((3-methoxysalicylidene)amino) propane; 4-Hppa=4-pyridinepropionic acid; 4-Hpca=4-pyridinecarboxylic acid)
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1D and 2D Zn-Ln coordination polymers based on compartment compounds: [ZnLn(L)(NO3)(2)(4-Ppa)(EtOH)] and [ZnLn(L)(NO3)(2)(4-pca) (H2O)] (Ln = Eu, Tb; H-2 L=1,3-bis((3-methoxysalicylidene)amino) propane; 4-Hppa=4-pyridinepropionic acid; 4-Hpca=4-pyridinecarboxylic acid)

机译:基于间隔化合物的一维和二维Zn-Ln配位聚合物:[ZnLn(L)(NO3)(2)(4-Ppa)(EtOH)]和[ZnLn(L)(NO3)(2)(4-pca) (H2O)](Ln = Eu,Tb; H-2 L = 1,3-双((3-甲氧基水杨基)氨基)丙烷; 4-Hppa = 4-吡啶丙酸; 4-Hpca = 4-吡啶羧酸)

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摘要

This paper describes the preparation of four 3d-4f (3d = Zn; 4f = Eu, Tb) coordination polymers and their emission quenching of the lanthanide ions. Two dinuclear Zn-Ln compartment compounds, [ZnLn(L) (NO3)(CH3CN)(H2O)(4)](NO3)(2)(H2O) (Ln = Eu, Tb), were prepared at room temperature by stirring an acetonitrile solution containing [Zn(L)] (H-2 L = 1,3-bis((3-methoxysalicylidene)amino)propane) and Ln (NO3)(3 center dot)n(H2O). When these compounds were treated with 4-pyridinepropionic acid (4-Hppa) under microwave-heating conditions, one-dimensional Zn-Ln coordination polymers were formed: [ZnLn(L) (NO3)(2)(4-ppa)(EtOH)] (Ln = Eu (1), Tb (2)). By contrast, these compounds reacted with pyridine-4-car-boxylic acid (4-Hpca) to give two-dimensional Zn-Ln coordination polymers: [ZnLn(L)(NO3)(2)(4-pca) (H2O)] (Ln = Eu (3), Tb (4)). All the compounds (1-4) exhibited the emission quenching of the Ln(3+) ion, probably due to the Ln(3+) -> Zn2+ energy transfer. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了四种3d-4f(3d = Zn; 4f = Eu,Tb)配位聚合物的制备及其镧系元素离子的发射猝灭。在室温下通过搅拌制备两种双核Zn-Ln间隔化合物[ZnLn(L)(NO3)(CH3CN)(H2O)(4)](NO3)(2)(H2O)(Ln = Eu,Tb)含有[Zn(L)](H-2 L = 1,3-双((3-甲氧基水杨亚基)氨基)丙烷)和Ln(NO3)(3中心点)n(H2O)的乙腈溶液。当这些化合物在微波加热条件下用4-吡啶丙酸(4-Hppa)处理时,形成一维Zn-Ln配位聚合物:[ZnLn(L)(NO3)(2)(4-ppa)(EtOH) )](Ln = Eu(1),Tb(2))。相比之下,这些化合物与吡啶-4-羧酸(4-Hpca)反应生成二维Zn-Ln配位聚合物:[ZnLn(L)(NO3)(2)(4-pca)(H2O) ](Ln = Eu(3),Tb(4))。所有化合物(1-4)表现出Ln(3+)离子的发射猝灭,可能是由于Ln(3+)-> Zn2 +能量转移。 (C)2016 Elsevier Ltd.保留所有权利。

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