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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Challenges in the size analysis of a silica nanoparticle mixture as candidate certified reference material
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Challenges in the size analysis of a silica nanoparticle mixture as candidate certified reference material

机译:二氧化硅纳米颗粒混合物作为候选认证参考材料的尺寸分析面临的挑战

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摘要

A new certified reference material for quality control of nanoparticle size analysis methods has been developed and produced by the Institute for Reference Materials and Measurements of the European Commission's Joint Research Centre. The material, ERM-FD102, consists of an aqueous suspension of a mixture of silica nanoparticle populations of distinct particle size and origin. The characterisation relied on an interlaboratory comparison study in which 30 laboratories of demonstrated competence participated with a variety of techniques for particle size analysis. After scrutinising the received datasets, certified and indicative values for different method-defined equivalent diameters that are specific for dynamic light scattering (DLS), centrifugal liquid sedimentation (CLS), scanning and transmission electron microscopy (SEM and TEM), atomic force microscopy (AFM), particle tracking analysis (PTA) and asymmetrical-flow field-flow fractionation (AF4) were assigned. The value assignment was a particular challenge because metrological concepts were not always interpreted uniformly across all participating laboratories. This paper presents the main elements and results of the ERM-FD102 characterisation study and discusses in particular the key issues of measurand definition and the estimation of measurement uncertainty.
机译:欧洲委员会联合研究中心参考材料和测量研究所已经开发和生产了一种用于纳米粒度分析方法质量控制的新认证参考材料。材料ERM-FD102由具有不同粒径和来源的二氧化硅纳米粒子群体混合物的水性悬浮液组成。该表征依赖于一项实验室间的比较研究,其中30个展示能力的实验室参与了各种粒度分析技术。在仔细检查接收到的数据集之后,对方法定义的不同等效直径的认证值和指示值进行了特定化,这些等效直径特定于动态光散射(DLS),离心液体沉降(CLS),扫描和透射电子显微镜(SEM和TEM),原子力显微镜( AFM),粒子跟踪分析(PTA)和不对称流场流分级分离(AF4)。价值分配是一个特殊的挑战,因为计量概念在所有参与实验室中并非总是统一解释。本文介绍了ERM-FD102表征研究的主要内容和结果,并特别讨论了被测量物定义和测量不确定度估计的关键问题。

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