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单颗粒电感耦合等离子体质谱法:纳米颗粒尺寸测定中的性能评估和方法比较。

Single particle inductively coupled plasma-mass spectrometry: a performance evaluation and method comparison in the determination of nanoparticle size.

机构信息

Nanosafety in the Environment, CSIRO Land and Water, Lucas Heights, NSW 2234 Australia.

出版信息

Environ Sci Technol. 2012 Nov 20;46(22):12272-80. doi: 10.1021/es301787d. Epub 2012 Jul 30.

Abstract

Sizing engineered nanoparticles in simple, laboratory systems is now a robust field of science; however, application of available techniques to more complex, natural systems is hindered by numerous challenges including low nanoparticle number concentrations, polydispersity from aggregation and/or dissolution, and interference from other incidental particulates. A new emerging technique, single particle inductively coupled plasma-mass spectrometry (spICPMS), has the potential to address many of these analytical challenges when sizing inorganic nanoparticles in environmental matrices. However, to date, there is little beyond the initial feasibility studies that investigates the performance characteristics and validation of spICPMS as a nanoparticle sizing technique. This study compares sizing of four silver nanoparticle dispersions (nominal diameters of 40, 60, 80, and 100 nm) by spICPMS to four established sizing techniques: dynamic light scattering, differential centrifugal sedimentation, nanoparticle tracking analysis, and TEM. Results show that spICPMS is able to size silver nanoparticles, across different sizes and particle number concentrations, with accuracy similar to the other commercially available techniques. Furthermore, a novel approach to evaluating particle coincidence is presented. In addition, spICPMS size measurements were successfully performed on nanoparticles suspended in algal growth media at low concentrations. Overall, while further development of the technique is needed, spICPMS yields important advantages over other techniques when sizing nanoparticles in environmentally relevant media.

摘要

在简单的实验室系统中对工程纳米粒子进行定尺寸处理现在已经成为一个成熟的科学领域;然而,将现有技术应用于更复杂的自然系统会受到许多挑战的阻碍,包括纳米粒子数量浓度低、聚集和/或溶解导致的多分散性,以及其他偶然颗粒的干扰。一种新出现的技术,即单颗粒电感耦合等离子体质谱(spICPMS),在对环境基质中的无机纳米粒子进行定尺寸处理时,具有解决许多这些分析挑战的潜力。然而,迄今为止,除了初步可行性研究之外,几乎没有研究探讨 spICPMS 作为纳米粒子定尺寸技术的性能特征和验证。本研究通过 spICPMS 将四种银纳米粒子分散体(标称直径为 40、60、80 和 100nm)的定尺寸与四种已建立的定尺寸技术进行了比较:动态光散射、差速离心沉降、纳米颗粒跟踪分析和 TEM。结果表明,spICPMS 能够对不同尺寸和颗粒数量浓度的银纳米粒子进行定尺寸处理,其准确性与其他商业上可用的技术相似。此外,还提出了一种评估颗粒符合的新方法。此外,还成功地在低浓度下悬浮在藻类生长介质中的纳米粒子上进行了 spICPMS 尺寸测量。总的来说,虽然该技术需要进一步发展,但 spICPMS 在对环境相关介质中的纳米粒子进行定尺寸处理时,相对于其他技术具有重要优势。

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