首页> 外文期刊>Journal of Luminescence >Fluorescence lifetime measurements to determine the core-shell nanostructure of FITC-doped silica nanoparticles: An optical approach to evaluate nanoparticle photostability
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Fluorescence lifetime measurements to determine the core-shell nanostructure of FITC-doped silica nanoparticles: An optical approach to evaluate nanoparticle photostability

机译:荧光寿命测量,以确定FITC掺杂的二氧化硅纳米粒子的核-壳纳米结构:一种评估纳米粒子光稳定性的光学方法

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In this paper, we described a novel fluorescence lifetime-based approach to determine the core-shell nanostructure of FITC-(fluorescein isothiocyanate, isomer I) doped fluorescent silica nanoparticles (FSNPs). Because of phase homogeneity between the core and the shell, electron microscopic technique could not be used to characterize such core-shell nanostructure. Our optical approach not only revealed the core-shell nanostructure of FSNPs but also evaluated photobleaching of FSNPs both in the solvated and non-solvated (dry) states. The FSNPs were produced via Stober's method by hydrolysis and co-condensation reaction of tetraethylorthosilicate (TEOS) and fluorescein linked (3-aminopropyl)triethoxysilane (FITC-APTS conjugate) in the presence of ammonium hydroxide catalyst. To obtain a pure silica surface coating, FSNPs were then post-coated with TEOS. The average particle size was 135 nm as determined by TEM (transmission electron microscope) measurements. Fluorescence excitation and emission spectral data demonstrated successful doping of FITC dye molecules in FSNPs. Fluorescence lifetime data revealed that approximately 62% of dye molecules remained in the solvated silica shell, while 38% of dye molecules remained in the non-solvated (dry) silica core. Photobleaching experiments of FSNPs were conducted both in DI water (solution state) and in air (dry state). Severe photobleaching of FSNPs was observed in air. However, FSNPs were moderately photostable in the solution state. Photostability of FSNPs in both solution and dry states was explained on the basis of fluorescence lifetime data. (c) 2005 Elsevier B.V. All rights reserved.
机译:在本文中,我们描述了一种新颖的基于荧光寿命的方法来确定FITC-(异硫氰酸荧光素,异构体I)掺杂的荧光二氧化硅纳米颗粒(FSNP)的核壳纳米结构。由于核和壳之间的相均匀性,电子显微镜技术不能用于表征这种核壳纳米结构。我们的光学方法不仅揭示了FSNPs的核壳纳米结构,而且还评估了在溶剂化和非溶剂化(干燥)状态下FSNPs的光致漂白。 FSNP通过Stober方法通过在氢氧化铵催化剂存在下原硅酸四乙酯(TEOS)和荧光素连接的(3-氨基丙基)三乙氧基硅烷(FITC-APTS共轭物)的水解和共缩合反应制得。为了获得纯二氧化硅表面涂层,然后用TEOS对FSNP进行后涂层。通过TEM(透射电子显微镜)测量确定的平均粒径为135nm。荧光激发和发射光谱数据证明在FSNPs中FITC染料分子的成功掺杂。荧光寿命数据表明,大约62%的染料分子保留在溶剂化的二氧化硅壳中,而38%的染料分子保留在非溶剂化(干燥)的二氧化硅核中。在去离子水(溶液状态)和空气(干燥状态)下都进行了FSNPs的光漂白实验。在空气中观察到FSNP的严重光漂白。但是,FSNP在溶液状态下具有适度的光稳定性。基于荧光寿命数据解释了溶液状态和干燥状态下FSNP的光稳定性。 (c)2005 Elsevier B.V.保留所有权利。

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