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Eu(3+)和Tb(3+)与各种配体在水溶液中螯合的发光性质和寿命的综合研究:协同剂、表面活性剂和配体三重态能级的影响

Comprehensive study of the luminescent properties and lifetimes of Eu(3+) and Tb(3+) chelated with various ligands in aqueous solutions: influence of the synergic agent, the surfactant and the energy level of the ligand triplet.

作者信息

Arnaud N, Georges J

机构信息

Laboratoire des Sciences et Stratégies Analytiques, Bât CPE, Domaine Scientifique de la Doua, 69622 Villeurbanne Cedex, France.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2003 Jun;59(8):1829-40. doi: 10.1016/s1386-1425(02)00414-6.

DOI:10.1016/s1386-1425(02)00414-6
PMID:12736069
Abstract

The formation and the properties of luminescent complexes of europium and terbium with a variety of organic ligands have been investigated in aqueous solutions. The ligands used include model compounds such as thenoyltrifluoroacetone and pyridine-2,6-dicarboxylic acid and organic analytes of biological or pharmaceutical interest. It is shown that the formation and the luminescent properties of these complexes depend at first on several parameters including the pH and the buffer, the synergic agent and the surfactant. In neutral solutions, trioctylphosphine oxide in the presence of Triton X-100 may act as a co-ligand to promote complex formation and protect the complex from radiationless deactivation processes. Working in slightly alkaline solutions in the presence of EDTA and hexadecyltrimethylammonium chloride may induce the deprotonation of a second coordinating group and favour the formation of a new complex with stronger luminescent properties. In both cases, the luminescence lifetimes are then ultimately related to the energy gap between the ligand triplet and the resonance level of the ion and to the number of water molecules coordinated to the lanthanide ion.

摘要

已在水溶液中研究了铕和铽与多种有机配体形成的发光配合物及其性质。所使用的配体包括诸如噻吩甲酰三氟丙酮和吡啶 - 2,6 - 二羧酸等模型化合物以及具有生物学或药学意义的有机分析物。结果表明,这些配合物的形成和发光性质首先取决于几个参数,包括pH值和缓冲剂、协同剂和表面活性剂。在中性溶液中,在Triton X - 100存在下的三辛基氧化膦可作为共配体促进配合物的形成,并保护配合物免受无辐射失活过程的影响。在EDTA和十六烷基三甲基氯化铵存在下于弱碱性溶液中进行研究,可能会导致第二个配位基团去质子化,并有利于形成具有更强发光性质的新配合物。在这两种情况下,发光寿命最终都与配体三重态与离子共振能级之间的能隙以及与镧系离子配位的水分子数量有关。

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