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Overcoming challenges in single particle inductively coupled plasma mass spectrometry measurement of silver nanoparticles

机译:克服银纳米粒子单粒子电感耦合等离子体质谱法的挑战

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摘要

Single particle ICP-MS has evolved rapidly as a quantitative method for determining nanoparticle size and number concentration at environmentally relevant exposure levels. Central to the application of spICP-MS is a commonly used, but not rigorously validated, calibration approach based on the measured transport efficiency and the response of ionic standards. In this work, we present a comprehensive and systematic study of the accuracy, precision and robustness of spICP-MS using the rigorously characterized reference material (RM) 8017 (Polyvinylpyrrolidone Coated Nominal 75 nm Silver Nanoparticles), recently issued by the National Institute of Standards and Technology (NIST). We report for the first time, statistically significant differences in frequency-based and size-based measures of transport efficiency with NIST RM 8013 Gold Nanoparticles and demonstrate that the size-based measure of transport efficiency is more robust and yields accurate results for the silver nanoparticle RM relative to TEM-based reference values. This finding is significant, because the frequency-based method is more widely applied. Furthermore, we demonstrate that the use of acidified ionic standards improves measurement of ICP-MS Ag response, but does not degrade the accuracy of the results for AgNP suspensions in water or various other diluents. Approaches for controlling AgNP dissolution were investigated and are shown to effectively improve particle stability in dilute suspensions required for spICP-MS analysis, while minimally affecting the measured intensity and allowing for more robust analysis. This study is an important and necessary advancement toward full validation and adoption of spICP-MS by the broader research community.
机译:单颗粒ICP-MS已迅速发展为一种定量方法,用于在环境相关的暴露水平下确定纳米颗粒的大小和数量浓度。基于已测量的传输效率和离子标准品的响应,spICP-MS应用的核心是一种常用但未经严格验证的校准方法。在这项工作中,我们使用美国国家标准学会最近发布的严格表征的参考材料(RM)8017(聚乙烯吡咯烷酮涂覆的标称75 nm银纳米颗粒),对spICP-MS的准确性,精密度和耐用性进行了全面而系统的研究。和技术(NIST)。我们首次报告了NIST RM 8013金纳米颗粒在基于频率和基于尺寸的运输效率度量上的统计显着差异,并证明基于尺寸的运输效率度量更可靠,并且可以得出银纳米颗粒的准确结果RM相对于基于TEM的参考值。这一发现意义重大,因为基于频率的方法得到了更广泛的应用。此外,我们证明了使用酸化的离子标准液可改善ICP-MS Ag响应的测量,但不会降低AgNP悬浮于水或各种其他稀释剂中的结果的准确性。对控制AgNP溶解的方法进行了研究,结果表明可有效提高spICP-MS分析所需的稀悬浮液中的颗粒稳定性,同时将对测量强度的影响降至最低,并允许进行更可靠的分析。这项研究是对整个研究团体全面验证和采用spICP-MS的重要且必要的进展。

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