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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Determination of Hydrodynamic Properties of Bare Gold and Silver Nanoparticles as a Fluorescent Probe Using Its Surface-Plasmon-Induced Photoluminescence by Fluorescence Correlation Spectroscopy
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Determination of Hydrodynamic Properties of Bare Gold and Silver Nanoparticles as a Fluorescent Probe Using Its Surface-Plasmon-Induced Photoluminescence by Fluorescence Correlation Spectroscopy

机译:使用表面相关激光诱导的光致发光,通过荧光相关光谱法测定裸露的金和银纳米粒子的流体动力学性质

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摘要

Noble-metal nanoparticles labeled with fluorescent molecules are used in a variety of applications requiring the measurement of size and diffusion properties of single nanoprobes. We have successfully used intrinsic surface-plasmon-induced photoluminescence (SPPL) signatures of mono-dispersed bare gold and silver nanoparticles in water to detect and measure their precise diffusion coefficient, concentration and hydrodynamic radius by fluorescence correlation spectroscopy (FCS). Measurement of the effective hydrodynamic radius confirms particle size to be 80 +- 8 and 64 +- 14 nm for gold and silver, respectively, which is in excellent agreement with scanning electron microscopic measurements made on the same particles. Detection of bare gold and silver nanoparticles at the single-molecule level with moderately high value of "per particle brightness" (PPB) confirms those particles to be used as fluorescent probes in biological research and in different medical and biotechnology applications where fluorescence detection plays a vital role. Additionally, these results demonstrate an alternative method for measuring hydrodynamic properties, particularly the size-distribution of bare noble-metal nanoparticles in solution using data-fitting algorithm for FCS based on the maximum entropy method (MEMFCS).
机译:标记有荧光分子的贵金属纳米颗粒可用于需要测量单个纳米探针尺寸和扩散特性的各种应用中。我们已经成功地使用了单分散裸金和银纳米粒子在水中的固有表面等离子体激元诱导的光致发光(SPPL)标记,通过荧光相关光谱(FCS)检测和测量了它们的精确扩散系数,浓度和流体动力学半径。有效流体力学半径的测量结果证实金和银的粒径分别为80±8和64±14 nm,这与对相同粒子进行的扫描电子显微镜测量非常吻合。对单分子水平的裸金和银纳米粒子的检测具有中等高的“每粒子亮度”(PPB)值,证实了这些粒子可用作生物学研究以及在荧光检测起着重要作用的不同医学和生物技术应用中的荧光探针。极其重要的作用。此外,这些结果表明使用基于最大熵方法(MEMFCS)的FCS数据拟合算法,可以测量溶液的流体力学性质,尤其是溶液中的贵金属纳米粒子的尺寸分布的替代方法。

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