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Critical Experimental Evaluation of Key Methods to Detect, Size and Quantify Nanoparticulate Silver

机译:关键实验评估,检测,定量和量化纳米颗粒银的关键方法

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摘要

Different analytical techniques, sedimentation flow field fractionation (SdFFF), asymmetrical flow field flow fractionation (AF4), centrifugal liquid sedimentation (CLS) and dynamic light scattering (DLS) have been used to give complementary size information about suspensions of silver nanoparticles (AgNPs) in the size range of 20-100 nm by taking advantage of the different physical principles on which are based. Particle morphology was controlled by TEM (Transmission Electron Microscopy). Both SdFFF and AF4 were able to accurately size all AgNPs; among sedimentation based techniques, CLS underestimated the average sizes of larger samples (70 and 100 nm), but it produced the best separation of bimodal mixtures Ag40/60 and Ag40/70 mix compared to SdFFF. On the contrary, DLS overestimated the average sizes of the smallest samples (20 and 30 nm) and it was unable to deal with bimodal mixtures. Quantitative mass and number particle size distributions were also calculated starting from UV-vis signals and ICP-MS data and the results evaluated as a means to address the issue of determining nanoparticle size distributions as required for implementation of European regulations relating to labeling of nanomaterials in consumer products. The results are discussed in light of possible particle aggregation state, analysis repeatability, size resolution and quantitative recoveries.
机译:已使用不同的分析技术,沉降流场分馏(SdFFF),不对称流场分流(AF4),离心液体沉降(CLS)和动态光散射(DLS)来提供有关银纳米颗粒(AgNPs)悬浮液的互补尺寸信息通过利用所基于的不同物理原理,在20-100 nm的尺寸范围内获得最大光通量。颗粒形态通过TEM(透射电子显微镜)控制。 SdFFF和AF4都能够准确确定所有AgNP的大小;在基于沉降的技术中,CLS低估了较大样品(70和100 nm)的平均尺寸,但与SdFFF相比,它能最好地分离出双峰混合物Ag40 / 60和Ag40 / 70混合物。相反,DLS高估了最小样本(20和30 nm)的平均大小,因此无法处理双峰混合物。还从UV-vis信号和ICP-MS数据开始计算了定量的质量和数量粒度分布,并对结果进行了评估,以此作为解决实施有关纳米材料标签的欧洲法规所要求的确定纳米粒度分布的方法消费产品。根据可能的颗粒聚集状态,分析可重复性,尺寸分辨率和定量回收率对结果进行了讨论。

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