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首页> 外文期刊>ACS Omega >Series of Highly Luminescent Macrocyclic Sm(III) Complexes: Functional Group Modifications Together with Luminescence Performances in Solid-State, Solution, and Doped Poly(methylmethacrylate) Film
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Series of Highly Luminescent Macrocyclic Sm(III) Complexes: Functional Group Modifications Together with Luminescence Performances in Solid-State, Solution, and Doped Poly(methylmethacrylate) Film

机译:系列高发光大环Sm(III)配合物:固态,溶液和掺杂聚甲基丙烯酸甲酯薄膜中的官能团修饰以及发光性能

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Here, we report our trials to regulate the luminescence performance of the macrocyclic samarium(III) complex and prepare four excellent luminescent Sm(III) complex-doped poly(methylmethacrylate) (PMMA) composites. Four 23-membered [1 + 1] Schiff-base macrocyclic mononuclear Sm(III) complexes, Sm-2a–Sm-2d, originating from dialdehydes with different pendant arms and 1,2-bis(2-aminoethoxy)ethane, have been constructed by the template method. Crystal structures reveal that every Sm(III) ion with the coordination geometry of a distorted bicapped square antiprism is capsulated by the macrocyclic cavity environment forming the “lasso-type” protection. Relative photophysical properties of macrocyclic Sm(III) complexes are carefully investigated in solid-state, methanol solution, and doped PMMA film, and all these show characteristic emissions of the Sm(III) ion associated with satisfactory lifetimes and quantum yields in all media, which could be comparable to reported outstanding examples. Especially, the luminescence performance for this type of Sm(III) complex could be regulated in the solid state by the use of different functional groups in the pendant arm while it is not achieved in solution and the doped PMMA composite. High emitting and air-stable plastic materials could be obtained when these Sm(III) complexes are doped in PMMA with 0.1 wt % mixing ratio, and the corresponding maximum lifetime and quantum yield are 61.2 μs and 0.63% in the case of complex Sm-2a, respectively. We believe that these highly luminescent “lasso-type” Sm(III) complexes and doped PMMA composites are valuable references in the design of luminescent lanthanide(III) hybrid materials.
机译:在这里,我们报告我们的试验,以调节大环sa(III)配合物的发光性能,并制备四种优异的掺杂Sm(III)配合物的聚(甲基丙烯酸甲酯)(PMMA)复合发光材料。四个由23个成员组成的[1 + 1] Schiff碱大环单核Sm(III)配合物Sm-2a-Sm-2d,它们来自具有不同侧链的二醛和1,2-双(2-氨基乙氧基)乙烷。通过模板方法构造。晶体结构表明,具有扭曲的双峰方形反棱镜的配位几何形状的每个Sm(III)离子都被形成“套索型”保护的大环腔环境封装。在固态,甲醇溶液和掺杂的PMMA膜中仔细研究了大环Sm(III)配合物的相对光物理性质,所有这些都表明Sm(III)离子的特征发射与在所有介质中的令人满意的寿命和量子产率相关,这可以与报告的杰出案例相媲美。尤其是,可以通过在悬臂中使用不同的官能团来调节固态Sm(III)配合物的发光性能,而在溶液和掺杂的PMMA复合材料中则无法实现。当这些Sm(III)配合物以0.1 wt%的混合比掺杂到PMMA中时,可以获得高发射性和空气稳定的塑料材料,并且在Sm-III的情况下,相应的最大寿命和量子产率分别为61.2μs和0.63%。 2a分别。我们认为,这些高发光的“套索型” Sm(III)配合物和掺杂的PMMA复合材料在发光镧系元素(III)杂化材料的设计中是有价值的参考。

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