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Mass Quantification of Nanoparticles by Single Droplet Calibration Using Inductively Coupled Plasma Mass Spectrometry

机译:使用电感耦合等离子体质谱法通过单滴定标对纳米颗粒进行质量定量

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摘要

Utilization of metallic engineered nanoparticles (ENP) is progressing rapidly; therefore, characterization of their most important properties, e.g., size/mass, elemental composition, and number concentration, is inevitable and currently uses a set of different techniques. In this work, a new setup is proposed for the quantitative size and mass determination of ENPs employing a monodisperse microdroplet generator (MDG) with transport efficiencies >95% coupled to an ICPMS. Two different MDG sample introduction configurations (vertical and horizontal) were tested, and their performance characteristics were evaluated. Due to a 5-fold reduced temporal jitter resulting in a shorter measurement time, the horizontal droplet introduction approach was used for the analysis of ENPs. With this setup, the quantification of Au, Ag, and CeO_2 nanoparticles of different sizes and polydispersities was achieved. Results are compared to complementary techniques such as transmission electron microscopy (TEM) and asymmetric flow field flow fractionation (AF4), and advantages as well as limitations of this newly proposed technique are discussed.
机译:金属工程纳米颗粒(ENP)的使用正在迅速发展。因此,表征其最重要的特性(例如大小/质量,元素组成和数量浓度)是不可避免的,目前使用了一系列不同的技术。在这项工作中,提出了一种新的设置,用于使用单分散微滴发生器(MDG)与ICPMS耦合传输效率> 95%的ENP的定量大小和质量测定。测试了两种不同的MDG样品引入配置(垂直和水平),并评估了它们的性能特征。由于时间抖动减少了5倍,从而缩短了测量时间,因此采用了水平液滴引入方法来分析ENP。通过这种设置,可以对不同大小和多分散性的Au,Ag和CeO_2纳米颗粒进行定量。将结果与互补技术(例如透射电子显微镜(TEM)和不对称流场流动分馏(AF4))进行比较,并讨论了这种新提出的技术的优点和局限性。

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