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Synthesis and fluorescence properties of rare earth metal ion–polymer ligand–low molecular weight ligand ternary complexes

机译:稀土金属离子-聚合物配体-低分子量配体三元配合物的合成及荧光性能

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AbstractEu3+‐containing polymer ternary complexes were synthesized using different kinds of functional polymers such as poly(benzylmalonic acid styrene) (PBMAS), poly(benzylacetone styrene) (PBAAS), and poly(benzyl‐azo‐o‐hydroxybenzoic acid styrene) (PBAHBAS) as polymer ligands. The structures of the complexes were investigated by elemental analysis and IR spectroscopy. The fluorescence intensity of Eu3+–polymer–TTA (2‐thenoyltrifuoroacetone ion) complexes was decreased in the order PBMAS(61)>PBAAS(42)>PBAHBAS(32). In system of Eu3+–PBMAS–low molecular weight ligand, the emission spectrum shape, the fluorescence intensity, and the wavelength of the maximum emission peak were changed when the low molecular weight ligand was varied. The fluorescence intensity of the Eu3+–PBMAS–TTA ternary complex was 610 times stronger than that of the Eu3+–PBMAS binary complex and 160 times stronger than that of Eu3+–PBMAS–oxine complex. The fluorescence intensity of the Eu3+–PBAAS–TTA complex was enhanced greatly when the proper mol ratio of HTTA/Eu3+and
机译:摘要 以聚苄基丙二酸苯乙烯(PBMAS)、聚苄基丙酮苯乙烯(PBAAS)和聚(苄基偶氮-o-羟基苯甲酸苯乙烯)(PBAHBAS)等不同种类的功能性聚合物为材料,合成了含Eu3+的聚合物三元络合物。通过元素分析和红外光谱研究了配合物的结构。Eu3+-聚合物-TTA(2-噻吩基三呤丙酰氧根离子)配合物的荧光强度按PBMAS(61)>PBAAS(42)>PBAHBAS(32)的顺序降低。在Eu3+–PBMAS–低分子量配体体系中,当低分子量配体发生变化时,发射光谱形状、荧光强度和最大发射峰的波长都发生了变化。Eu3+-PBMAS-TTA三元配合物的荧光强度是Eu3+-PBMAS二元配合物的610倍,是Eu3+-PBMAS-氧杂碱配合物的160倍。当HTTA/Eu3+和

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