首页> 外文期刊>Journal of Fluorescence >Fabrication and Spectroscopic Characterization of Langmuir-Blodgett Films with Luminescent Rare Earth Complexes of Long Chain Double Functional Ligands Mono-L Phthalate (L = Hexadecyl, Octadecyl and Eicosyl)
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Fabrication and Spectroscopic Characterization of Langmuir-Blodgett Films with Luminescent Rare Earth Complexes of Long Chain Double Functional Ligands Mono-L Phthalate (L = Hexadecyl, Octadecyl and Eicosyl)

机译:长链双功能配体单L邻苯二甲酸酯(L =十六烷基,十八烷基和二十碳烷基)的发光稀土配合物Langmuir-Blodgett膜的制备和光谱表征

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摘要

In this paper, some novel long chain amphiphillic monoester molecules were designed to afford double functions: film-formation ability and luminescent sensitization ability. Subsequently organized molecular films of rare earth complexes with these functional ligands formulated as ML2NO3 were fabricated by the Langmuir-Blodgett film (LB) technology, where RE denotes rare earth ions Eu3+, Tb3+ and Dy3+; L denotes the long chain carboxylic ligands monohexadecyl phthalate (16-Phth), monooctadecyl phthalate (18-Phth) and monoeicosyl phthalate (20-Phth). The average molecular area was obtained according to the π-A isotherms. The layer structure of the LB films was demonstrated by low-angle X-ray diffraction and the average layer spacing was determined from the Bragg equation. UV absorption intensity increases linearly with the number of LB films layers, which indicates that the LB films are homogeneously deposited. The fluorescence spectra of these LB films were quite different from those of their solid complexes. It reveals that the long chain ester ligands are suitable for the excited states of Tb3+ and Dy3+ in the LB films as well as in the solid complexes, but not match with the europium ion in the LB films.
机译:本文设计了一些新颖的长链两亲性单酯分子以提供双重功能:成膜能力和发光敏化能力。随后通过Langmuir-Blodgett膜(LB)技术制备了具有这些功能性配体配制成ML2NO3的稀土配合物的有序分子膜,其中RE表示稀土离子Eu3 +,Tb3 +和Dy3 +。 L表示长链羧酸配体邻苯二甲酸单十六烷基酯(16-Phth),邻苯二甲酸单十八烷基酯(18-Phth)和邻苯二甲酸单二十烷基酯(20-Phth)。根据π-A等温线获得平均分子面积。 LB膜的层结构通过低角度X射线衍射证实,并且平均层间距由布拉格方程确定。 UV吸收强度随LB膜层数的增加而线性增加,这表明LB膜是均匀沉积的。这些LB膜的荧光光谱与它们的固体配合物的荧光光谱完全不同。结果表明,长链酯配体适合于LB膜以及固体络合物中Tb3 +和Dy3 +的激发态,但不适合LB膜中的ion离子。

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