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The Coordination and Luminescence of the Eu(III) Complexes with the Polymers (PMMA PVP)

机译:Eu(III)配合物与聚合物(PMMAPVP)的配位和发光

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摘要

The rare earth complexes and the polymers can be made into composite nanofibers through electrospinning. The fluorescence intensity of these fiber composites is much higher than that of the rare earth complexes. By changing the mixed proportion of polymethyl methacrylate (PMMA) and complexes, nanofiber materials were prepared. Then, by measuring their fluorescence intensity, it is found that the carbonyl bond of PMMA may have coordinated with the rare earth ions and enhanced the luminescence intensity of them. Then, a series of experiments were designed to study their coordination and luminescence mechanism. The coordination mechanism of the polymers with carbonyl groups and the rare earth complexes was explained by Eu(TFT)3(TPPO), Eu(TFT)3(TPPO)2, Eu(PFP)3(TPPO), Eu(PFP)3(TPPO)2, and polyvinyl pyrrolidone (PVP) dissolved in chloroform solution, where TFT means 2-(2,2,2-trifluoroethyl)-1-tetralone, PFP means 2-(2,2,3,3,3-Pentafluoropro-panoyl)-3,4-dihydronaphthalen-1(2H)-one and TPPO means phosphine oxide. The coordination of PVP and the rare earth complexes in solution was studied, and it was found that the fluorine atoms of the ligand had a significant impact on the aggregation-induced effect of the composites. The electron transitioned in the polymers and the complexes were enhanced greatly by the coordination. The colors of emission light could be adjusted by the coordination of the polymers and the rare earth complexes.
机译:稀土配合物和聚合物可以通过静电纺丝制成复合纳米纤维。这些纤维复合材料的荧光强度远高于稀土配合物的荧光强度。通过改变聚甲基丙烯酸甲酯(PMMA)和配合物的混合比例,制备了纳米纤维材料。然后,通过测量它们的荧光强度,发现PMMA的羰基键可能已与稀土离子配位并增强了它们的发光强度。然后,设计了一系列实验来研究它们的配位和发光机理。 Eu(TFT)3(TPPO),Eu(TFT)3(TPPO)2,Eu(PFP)3(TPPO),Eu(PFP)3解释了含羰基聚合物与稀土配合物的配位机理(TPPO)2和溶解在氯仿溶液中的聚乙烯吡咯烷酮(PVP),其中TFT表示2-(2,2,2-三氟乙基)-1-四氢萘酮,PFP表示2-(2,2,3,3,3-五氟原泛酰基)-3,4-二氢萘-1(2H)-1和TPPO表示氧化膦。研究了溶液中PVP与稀土配合物的配位关系,发现配体中的氟原子对复合材料的聚集诱导作用有重要影响。通过配位,聚合物中的电子跃迁和配合物大大增强。可以通过聚合物和稀土配合物的配合来调节发射光的颜色。

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