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Isostructural lanthanide-based metal-organic frameworks: structure, photoluminescence and magnetic properties

机译:基于IsoStrontuctuctuctucture镧系元素 - 有机框架:结构,光致发光和磁性

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A series of the anhydrous lanthanide-based metal-organic frameworks (Ln-MOFs) were successfully synthesized under hydrothermal conditions of Ln(III) ions with 3,4'-oxybis(benzoate) (3,4'-oba), oxalate (ox) and 1,10-phenanthroline (phen). Structural analyses revealed that they are isostructural 3D open-frameworks with the formula of [Ln(3,4'-oba) (phen)(ox)(0.5)](n) (Ln = Sm for 1, Eu for 2, Gd for 3, Tb for 4, and Dy for 5) and the topology of {3(3) . 4(3) . 5(8) . 6}. Within the 3D structure, the [LnO(6)N(2)] units are bridged by ox to form [Ln2ox] dimers and then are further connected by 3,4'-oba ligands. These complexes feature high chemical stabilities in common solvents, boiling water, and acidic (pH = 3) and alkaline (pH = 13) solutions and high thermal stability even up to 400 degrees C. The photoluminescence and magnetic properties were studied. Especially, 2 shows bright red emission with a high luminescence efficiency of 40.51%. We mainly discuss the luminescence properties of 2 in common solvents and inorganic ions. It shows luminescence stability in common solvents and the ability to detect ammonia and Fe3+ ions under a long excitation wavelength (350 nm). Significantly, magnetic studies reveal that the Dy-MOF, 5, shows a typical singlemolecule magnetic behavior. Under zero dc field, compound 5 shows temperature and frequency dependent out-of-phase (chi '' M) signals, indicating the existence of slow magnetic relaxation.
机译:一系列无水镧系金属 - 有机骨架(LN-MOF)在LN(III)离子的水热条件下成功合成,其中3,4'-氧气(苯甲酸盐)(3,4'-OBA),草酸盐(牛)和1,10菲咯啉(phen)。结构分析显示,它们是具有[LN(3,4'-OBA)(Phen)(Wap)(0.5)(0.5)(0.5)](N)(Ln = Sm的1,Eu 2,Gd的eu)(Ln = Sm)的isostratural 3D开放框架对于3,Tb,4,Dy 5)和{3(3)的拓扑。 4(3)。 5(8)。 6}。在3D结构内,[LNO(6)n(2)]单位通过低氧桥接以形成[LN2Ox]二聚体,然后通过3,4'-OBA配体进一步连接。这些配合物具有普通溶剂,沸水和酸性(pH = 3)和碱性(pH = 13)溶液的高化学稳定性,并且甚至高达400℃的高热稳定性。研究了光致发光和磁性。特别是,2显示出明亮的红色发射,高发光效率为40.51%。我们主要讨论普通溶剂和无机离子中2的发光性质。它显示普通溶剂中的发光稳定性以及在长激发波长(350nm)下检测氨和Fe3 +离子的能力。显着地,磁性研究表明Dy-Mof,5显示典型的单点磁性。在零DC场下,化合物5显示温度和频率依赖性超相(CHI'M)信号,表明存在缓慢磁性松弛。

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