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Validation of a Homogeneous Incremental Centrifugal Liquid Sedimentation Method for Size Analysis of Silica (Nano)particles

机译:二氧化硅(纳米)粒子尺寸分析均匀增量离心液沉积方法的验证

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摘要

Silica nanoparticles display many unique physicochemical properties that make them desirable for use in a wide variety of consumer products and composite materials. Accurately measuring the size of these nanoparticles is important for achieving the desired nanoscale functionality of the final product and for regulatory compliances. This study covers the validation of a centrifugal liquid sedimentation method for accurate measurement of the Stokes diameter of silica particles with a near-spherical shape and dimensions in the nanometer and sub-nanometer scale range. The validated method provided unbiased results in the range of 50 nm to 200 nm, with a lower limit of detection of ≤20 nm. The relative standard uncertainties for precision, quantified in terms of repeatability and day-to-day variation, ranged from 0.2% to 1.0% and from <0.1% to 0.5%, respectively. The standard uncertainty for trueness was assessed at 4.6%. Within its working range, the method was found robust with respect to the type of cuvette, light factor, operator, and for defining the meniscus of the sample suspension. Finally, a relative expanded measurement uncertainty of 10% confirmed the satisfactory performance of the method.
机译:二氧化硅纳米粒子显示许多独特的物理化学性质,使其使其在各种消费产品和复合材料中使用。准确地测量这些纳米颗粒的尺寸对于实现最终产品的所需纳米级功能和监管符合性是重要的。本研究涵盖了离心液沉降方法,以便精确测量二氧化硅颗粒的斯托克斯直径,纳米和亚纳米尺度范围内的近球形形状和尺寸。验证的方法提供了不偏的导致50nm至200nm的结果,检测限≤20nm。精度的相对标准不确定性,在可重复性和日常变化方面量化,范围为0.2%至1.0%,分别为<0.1%至0.5%。改革的标准不确定性被评估为4.6%。在其工作范围内,对比色皿,光源因子,操作员的类型具有鲁棒的方法,以及用于定义样品悬浮液的弯月面的稳健。最后,10%的相对扩展的测量不确定度证实了该方法的令人满意的性能。

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