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Broadband enhanced fluorescence using zinc-oxide nanoflower arrays

机译:使用氧化锌纳米花阵列的宽带增强荧光

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ZnO nanostructures were fabricated into flower-like nanoscale arrays by the hydrothermal growth of ZnO nanowires onto a self-assembled monolayer of polystyrene spheres on a glass substrate. Fluorescent molecules conjugated with streptavidin were incubated on glass with 3-(glycidoxypropyl) trimethoxysilane (GPTS) modified and biotinylated bovine serum albumin (bBSA) attached (GPTS-bBSA), aligned ZnO nanorod arrays and ZnO nanoflower arrays, respectively. An enhancement factor of up to 45 was obtained from ZnO nanoflower arrays, compared to less than 10 for the aligned nanorods. More importantly, using the same substrate, we observed a broadband fluorescence enhancement. The level of enhancement obtained from the nanoflower arrays is comparable with that from Metal Enhanced Fluorescence. The broadband nature of this process makes it an attractive alternative for fluorescent based device development.
机译:通过水热生长ZnO纳米线到玻璃基板上自组装的聚苯乙烯球单分子层上,ZnO纳米结构被制成花状纳米级阵列。将与抗生蛋白链菌素共轭的荧光分子与3-(环氧丙氧基丙基)三甲氧基硅烷(GPTS)修饰并附着生物素化的牛血清白蛋白(bBSA)(GPTS-bBSA)在玻璃上孵育,分别排列成ZnO纳米棒阵列和ZnO纳米花阵列。从ZnO纳米花阵列获得的增强因子最多为45,而对齐的纳米棒的增强因子小于10。更重要的是,使用相同的底物,我们观察到宽带荧光增强。从纳米花阵列获得的增强水平与从金属增强荧光获得的增强水平相当。此过程的宽带性质使其成为基于荧光的设备开发的有吸引力的替代方法。

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