首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Comparison of Nanoparticle Size and Electrophoretic Mobility Measurements Using a Carbon-Nanotube-Based Coulter Counter,Dynamic Light Scattering,Transmission Electron Microscopy,and Phase Analysis Light Scattering
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Comparison of Nanoparticle Size and Electrophoretic Mobility Measurements Using a Carbon-Nanotube-Based Coulter Counter,Dynamic Light Scattering,Transmission Electron Microscopy,and Phase Analysis Light Scattering

机译:碳纳米管库尔特计数器,动态光散射,透射电子显微镜和相分析光散射的纳米粒度和电泳迁移率测量的比较。

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摘要

The precision and accuracy of measurements of the diameter and electrophoretic mobility (mu) of polymeric nanoparticles is compared using four different analytical approaches:carbon-nanotube-based Coulter counting,dynamic light scattering (DLS),transmission electron microscopy (TEM),and phase analysis light scattering (PALS).Carbon-nanotube-based Coulter counters (CNCCs) use a 132 nm diameter channel to simultaneously determine the diameter (28-90 nm) and mu value for individual nanoparticles.These measurements are made without calibration of the CNCC and without labeling the sample.Moreover,because CNCCs measure the properties of individual particles,they provide true averages and polydispersities that are not convoluted into the intrinsic instrumental response function of the CNCC.CNCCs can be used to measure the size of individual nanoparticles dispersed in aqueous solutions,which contrasts with the TEM-measured size of individual dehydrated particles and the ensemble size averages of dispersed particles provided by DLS.CNCCs provide more precise values of mu than PALS.
机译:使用四种不同的分析方法比较了聚合物纳米颗粒直径和电泳迁移率(μ)的测量精度和准确性:基于碳纳米管的库尔特计数,动态光散射(DLS),透射电子显微镜(TEM)和相分析光散射(PALS)。基于碳纳米管的库尔特计数器(CNCC)使用直径为132 nm的通道来同时确定单个纳米粒子的直径(28-90 nm)和mu值。这些测量无需校准CNCC而且,由于CNCC可以测量单个颗粒的特性,因此它们提供了真实的平均值和多分散性,而这些均值和多分散性没有被卷积到CNCC的固有仪器响应函数中。CNCC可以用于测量分散在其中的单个纳米颗粒的尺寸水溶液,这与TEM测得的单个脱水颗粒的尺寸和整体尺寸平均值形成对比由DLS.CNCC提供的分散粒子数量比PALS更精确。

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