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Dynamic light scattering measurement of nanometer particles in liquids

机译:液体中纳米颗粒的动态光散射测量

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Dynamic light scattering (DLS) techniques for studying sizes and shapes of nanoparticles in liquids are reviewed. In photon correlation spectroscopy (PCS), the time fluctuations in the intensity of light scattered by the particle dispersion are monitored. For dilute dispersions of spherical nanoparticles, the decay rate of the time autocorrelation function of these intensity fluctuations is used to directly measure the particle translational diffusion coefficient, which is in turn related to the particle hydrodynamic radius. For a spherical particle, the hydrodynamic radius is essentially the same as the geometric particle radius (including any possible solvation layers). PCS is one of the most commonly used methods for measuring radii of submicron size particles in liquid dispersions. Depolarized Fabry-Perot interferometry (FPI) is a less common dynamic light scattering technique that is applicable to optically anisotropic nanoparticles. In FPI the frequency broadening of laser light scattered by the particles is analyzed. This broadening is proportional to the particle rotational diffusion coefficient, which is in turn related to the particle dimensions. The translational diffusion coefficient measured by PCS and the rotational diffusion coefficient measured by depolarized FPI may be combined to obtain the dimensions of non-spherical particles. DLS studies of liquid dispersions of nanometer-sized oligonucleotides in a water-based buffer are used as examples.
机译:综述了用于研究液体中纳米粒子的大小和形状的动态光散射(DLS)技术。在光子相关光谱法(PCS)中,监视由粒子分散体散射的光强度的时间波动。对于球形纳米颗粒的稀分散体,这些强度波动的时间自相关函数的衰减率用于直接测量颗粒平移扩散系数,而后者又与颗粒流体动力学半径有关。对于球形颗粒,流体动力学半径与几何颗粒半径(包括任何可能的溶剂化层)基本相同。 PCS是测量液体分散体中亚微米尺寸颗粒半径的最常用方法之一。去极化法布里-珀罗干涉法(FPI)是一种较不常见的动态光散射技术,适用于光学各向异性纳米粒子。在FPI中,分析了由粒子散射的激光的频率展宽。这种加宽与颗粒旋转扩散系数成正比,而颗粒旋转扩散系数又与颗粒尺寸有关。可以组合通过PCS测量的平移扩散系数和通过去极化FPI测量的旋转扩散系数,以获得非球形粒子的尺寸。例如,将纳米级寡核苷酸在水基缓冲液中的液体分散液进行DLS研究。

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