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Capabilities of Single Particle Inductively Coupled Plasma Mass Spectrometry for the Size Measurement of Nanoparticles: A Case Study on Gold Nanoparticles

机译:单颗粒电感耦合等离子体质谱法测量纳米颗粒尺寸的能力:以金纳米颗粒为例

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The increasing application of engineered nanomaterials (ENMs) in consumer and medical products has motivated the development of single-particle inductively coupled plasma mass spectrometry (spICP-MS) for characterizing nanoparticles under realistic environmental exposure conditions. Recent studies have established a set of metrological criteria and evaluated the feasibility of spICP-MS for sizing or quantifying various highly commercialized ENMs. However, less is known about the performance of spICP-MS for detecting nanoparticles with sizes greater than 80 nm. This paper presents a systematic study on spICP-MS for accurate size measurement of gold nanoparticles from 10 to 200 nm. We show that dwell time contributes significantly to the quality of data, with the optimal dwell time that limits split particle events, particle coincidences and false positives being 10 ms. A simple approach to correct for split particle events is demonstrated. We show that transient features of single particle events can be temporally resolved on a conventional quadrupole ICP-MS system using a sufficiently short dwell time (0.1 ms). We propose an intensity-size diagram for estimating the linear dynamic size range and guiding the selection of ICP-MS operating conditions. The linear dynamic size range of the ICP-MS system under standard (highest) sensitivity conditions is 10 to 70 nm but can be further extended to 200 nm by operating in less sensitive modes. Finally, the ability of spICP-MS to characterize heterogeneous forms of metal containing nanoparticles is evaluated in mixtures containing both dissolved and poly disperse nanoparticulate Au.
机译:工程纳米材料(ENM)在消费品和医疗产品中的日益增长的应用促使了单颗粒感应耦合等离子体质谱仪(spICP-MS)的发展,以表征现实的环境暴露条件下的纳米颗粒。最近的研究已经建立了一套计量标准,并评估了spICP-MS用于确定或量化各种高度商业化的ENM的可行性。但是,对于spICP-MS用于检测尺寸大于80 nm的纳米颗粒的性能知之甚少。本文对spICP-MS进行了系统研究,以准确测量10至200 nm的金纳米颗粒的尺寸。我们显示停留时间对数据质量有重要贡献,最佳停留时间限制了分裂粒子事件,粒子重合和假阳性为10 ms。演示了一种纠正分裂粒子事件的简单方法。我们表明,可以使用足够短的驻留时间(0.1 ms)在常规四极杆ICP-MS系统上暂时解决单个粒子事件的瞬态特征。我们提出了一个强度尺寸图,用于估算线性动态尺寸范围并指导ICP-MS操作条件的选择。 ICP-MS系统在标准(最高)灵敏度条件下的线性动态尺寸范围为10至70 nm,但可以通过在较低灵敏度模式下运行进一步扩展至200 nm。最后,在含有溶解和多分散纳米颗粒金的混合物中评估了spICP-MS表征含金属纳米颗粒的异质形式的能力。

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