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Fluorescence enhancement of Tb^(3+) complexes by adding silica-coated silver nanoparticles 被引量:2

Fluorescence enhancement of Tb^(3+) complexes by adding silica-coated silver nanoparticles
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摘要 Six kinds of terbium ternary complexes with halo-benzoic acids were synthesized. Their compositions were determined by C, H elemental analyzer and EDTA titration. The infrared spectra, ultraviolet absorption spectra, and fluorescence spectra were also measured to identify the complexes. Elemental analysis showed that the compositions of these complexes were Tb(p-Br BA)3?H2O, Tb(p-Cl BA)3?2H2O, Tb(p-FBA)3?H2O, Tb(o-FBA)3?2H2O, Tb(o-Cl BA)3?H2O, and Tb(o-Br BA)3?H2O, respectively. The monodispersed Ag@Si O2 core-shell nanoparticles with silica thicknesses of 10, 15, and 25 nm were successfully prepared and characterized by transmission-electron microscopy. Fluorescence intensities of the complexes were detected before and after Ag@Si O2 core-shell nanoparticles were added; the enhancement times were related to the silica-shell thickness. The fluorescence enhancement times were largest when the thickness of the silica shell was 25 nm. The mechanism may be attributed to the localized surface-plasmon resonance. Furthermore, the enhancement effect of terbium fluoro-benzoate complexes was the strongest in these complexes. This result may be attributed to the hydrogen bond between the hydroxyl on the surface of the silica shell and the fluorine atom. Six kinds of terbium ternary complexes with halo-benzoic acids were synthesized. Their compositions were determined by C, H elemental analyzer and EDTA titration. The infrared spectra, ultraviolet absorption spectra, and fluorescence spectra were also measured to identify the complexes. Elemental analysis showed that the compositions of these complexes were Tb(p-BrBA)3- H20, Tb(p-CIBA)3- 2H20, Tb(p-FBA)3- H20, Tb(o-FBA)3·2H20, Tb(o-CIBA)3· H20, and Tb(o-BrBA)3. H20, respectively. The monodispersed Ag@SiO2 core-shell nanoparticles with silica thicknesses of 10, 15, and 25 nm were success- fully prepared and characterized by transmission-electron microscopy. Fluorescence intensities of the complexes were detected before and after Ag@SiO2core-shell nanoparticles were added; the enhancement times were related to the silica-shell thick- ness. The fluorescence enhancement times were largest when the thickness of the silica shell was 25 nm. The mechanism may be attributed to the localized surface-plasmon resonance. Furthermore, the enhancement effect of terbium fluoro-benzoate complexes was the strongest in these complexes. This result may be attributed to the hydrogen bond between the hydroxyl on the surface of the silica shell and the fluorine atom.
出处 《Science China Chemistry》 SCIE EI CAS CSCD 2015年第6期979-985,共7页 中国科学(化学英文版)
基金 supported by the National Natural Science Foundation of China(21161013) the Natural Science Foundation of Inner Mongolia(2011MS0202) the Opening Foundation for Significant Fundamental Research of Inner Mongolia(2010KF03)
关键词 银纳米颗粒 铽配合物 二氧化硅 荧光增强 表面等离子体共振 透射电子显微镜 滴定法测定 元素分析仪 Tb3+ complexes, halobenzoic acids, Ag@SiO2 core-shell nanoparticles, metal-enhanced fluorescence
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