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Fluorescent Magnetic Silica Nanotubes with High Photostability Prepared by the Conventional Reverse Micro-Emulsion Method

机译:常规反向微乳液法制备的高光稳定性荧光磁性二氧化硅纳米管

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Magnetic fluorescent silica nanotubes were fabricated using reverse micro-emulsions coupled with conventional sol-gel methods. Anodic aluminum oxide templates were used to separate spatially the magnetic and the fluorescent moieties on individual nanotubes and so prevent quenching of the fluorescence. C18 and fluorescent layers were deposited sequentially on silica. Magnetism was then obtained by the introduction of pre-made magnetic nanoparticles inside the nanotubes. The photo- and chemical stabilities of nanotubes were demonstrated through dye release and photobleaching tests. The produced nanotubes did not show fluorescence quenching upon the addition of the nanoparticles, an advantage over conventional spherical fluorescent magnetic nanoparticles. High photostability of nanotubes, magnetism and biocompatiblily make them potentially useful in bioanalysis.
机译:磁性荧光二氧化硅纳米管是使用反向微乳液与常规溶胶-凝胶法偶联制备的。使用阳极氧化铝模板在空间上分离各个纳米管上的磁性和荧光部分,从而防止荧光猝灭。 C18和荧光层顺序沉积在二氧化硅上。然后通过在纳米管内部引入预制的磁性纳米颗粒来获得磁性。通过染料释放和光漂白测试证明了纳米管的光化学稳定性。添加纳米颗粒后,产生的纳米管没有显示出荧光猝灭,这是优于常规球形荧光磁性纳米颗粒的一个优点。纳米管的高光稳定性,磁性和生物相容性使其在生物分析中具有潜在的用途。

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