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首页> 外文期刊>Bulletin of the Korean Chemical Society >The Distance-Dependent Fluorescence Enhancement Phenomena in Uniform Size Ag@SiO2@SiO2(dye) Nanocomposites
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The Distance-Dependent Fluorescence Enhancement Phenomena in Uniform Size Ag@SiO2@SiO2(dye) Nanocomposites

机译:尺寸均一的Ag @ SiO2 @ SiO2(染料)纳米复合材料中随距离变化的荧光增强现象

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摘要

Ag@SiO2@SiO2(FITC) nanocomposites were prepared by the simple polyol process and Stober method. Fluorescence enhancement of fluorescein moiety (fluorescein isothiocyanate, FITC) was investigated in the presence of silver nanoparticles in Ag@SiO2-X@SiO2(FITC) system with varying thickness (X nm) of first silica shell. Maximum enhancement factor of 4.3 fold was achieved in Ag@SiO2-8@SiO2(FITC) structure with the first silica shell thickness of 8 nm and the average separation distance of 11 nm between the surface of silver nanoparticle and fluorescein moiety. The enhancement is believed to be originated from increased excitation rate of fluorescein moiety due to concentrated local electromagnetic field which was improved by interaction of light with silver nanoparticles.
机译:采用简单的多元醇法和斯托伯法制备了Ag @ SiO2 @ SiO2(FITC)纳米复合材料。在Ag @ SiO2-X @ SiO2(FITC)系统中,在第一纳米二氧化硅壳厚度(X nm)变化的银纳米粒子存在下,研究了荧光素部分(异硫氰酸荧光素,FITC)的荧光增强。 Ag @ SiO2-8 @ SiO2(FITC)结构的最大增强因子达到4.3倍,第一二氧化硅壳厚度为8 nm,银纳米颗粒表面与荧光素部分之间的平均间隔距离为11 nm。据认为,这种增强是由于荧光素部分的激发速率增加,这是由于集中的局部电磁场引起的,这种增强通过光与银纳米颗粒的相互作用得以改善。

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