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机构地区:[1]湖南工业大学绿色包装材料与生物纳米技术应用重点实验室,湖南株洲412008
出 处:《湖南城市学院学报(自然科学版)》2007年第1期45-49,共5页Journal of Hunan City University:Natural Science
基 金:Supported by Foundation of Hunan Education Bureau for Young Scholars Corresponding(05B075)
摘 要:为了研究Eu(III)-配合物的共发光与其结构的关系,合成了Eu(III)/Gd(III)与2-噻酚三氟乙耽丙酮(HTTA)、对苯二甲酸(TPA)和邻菲罗啉(Phen)形成的系列配合物,井运用元素分析、红外光谱对这些配合物进行表征.共发光Gd3+离子对Eu(III)-配合物的荧光增强效果非常明显,其共发光效果与结构的关系是:网状多核配合物Eu2(1-x)Gd2x(TPA)3Phen2 >链状多核配合物Eu1-xGdx(TPA)(TTA)Phen>单核配合物Eu1-xGdx(TTA)3Phen.荧光增强的机理可从配合物的单核和多核结构获得解释,异多核配合物Eu1-xGdx(TPA)(TTA)Phen与Eu2(1-x)Gd2x(TPA)3Phen2分子内能量传递比异单核配合物Eu1-xGdx(TTA)3Phen分子间能量传递更有效.In order to investigate the relationship between cofluorescence and the structure of the Eu (Ⅲ) complexes, a series of europium (Ⅲ)/gadolinium(Ⅲ) complexes of 2-thienyltrifluoroacetonate(TTA)/terephthalic acid(TPA) and phenanthroline(Phen) have been synthesized. These complexes were characterized by elemental analysis and infrared spectra analysis. The fluorescence enhancement of Gd^3+ ions to the Eu(Ⅲ) complexes is clear. The effect of Gd^3+ ion cofluorescence in the Eu(Ⅲ) complexes increases in the following order: the mononuclear complex Eu1-xGdx(TTA)3Phen, the chain polynuclear complex Eu1-xGdx(TPA)(TTA)Phen, the net polynuclear complex Eu2(1-x)Gd2x(TPA)3Phen2, which clearly establishes a correlation between the structure of the Eu(Ⅲ) complexes and the effect of cofluorescence for the first time. The mechanism of cofluorescence in the above-mentioned Eu(Ⅲ) complexes is preferably interpreted from the mononuclear and polynuclear structure of these complexes. Intra molecular energy transfer in the cross polynuclear complexes Eu1-xGdx(TPA)(TTA)Phen and Eu2(1-x)Gd2x(TPA)aPhen2 is more efficient than intermolecular energy transfer between cross mononuclear complexes Eu1-xGdx(TTA)3Phen.
关 键 词:荧光性质 共发光 铕 对苯二甲酸 2-噻酚三氟乙酰丙酮
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