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Gunshot residue (GSR) analysis by single particle inductively coupled plasma mass spectrometry (spICP-MS)

机译:通过单颗粒电感耦合等离子体质谱(SPICP-MS)分析枪支残留物(GSR)分析

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摘要

Single particle inductively coupled plasma mass spectrometry (spICP-MS) was investigated as a screening-level technique for the analysis and characterization of inorganic gunshot residue (IGSR) nanoparticles. spICP-MS works with undigested samples whereby nanoparticles (NPs) in a suspension are individually atomized and ionized as they reach the plasma, each resulting in a pulse of analyte ions that can be quantified. The method is rapid, and signals from hundreds of NPs can be collected in 1-2 min per sample. The technique is quantitative for NP mass and number concentration when only one element (single element mode) is measured using a quadrupole MS. Likewise, a qualitative elemental fingerprint can be obtained for individual NPs when peak-hopping between two elements (dual element mode). For this proof of concept study, each shooter's hand was sampled with ultrapure water or swab to obtain NPs suspensions. Measurements of antimony, barium, and lead were performed using both analysis modes. With no sample preparation and fully automated sample introduction, it is possible to analyze more than 100 samples in a day. Results show that this technique opens a new perspective for future research on GSR sample identification and characterization and can complement SEM/EDX analysis. (c) 2018 Elsevier B.V. All rights reserved.
机译:研究单颗粒电感耦合等离子体质谱(SPICP-MS)作为用于分析和表征无机枪渣残基(IGSR)纳米颗粒的筛分水平技术。 SPICP-MS适用于未消化的样品,其中悬浮液中的纳米颗粒(NPS)被单独雾化和电离,因为它们到达等离子体时,每个都应导致可以量化的分析物离子的脉冲。该方法快速,每次样本可以在1-2分钟内收集来自数百个NP的信号。当使用四极摩的仅测量一个元素(单个元件模式)时,该技术是数量的NP质量和数量浓度。同样地,当两个元件(双元素模式)之间的跳跃时,可以为各个NP获得定性元素指纹。对于这种概念研究证明,每个射手的手用超纯水或拭子取样,以获得NPS悬浮液。使用两种分析模式进行锑,钡和铅的测量。没有样品制备和全自动样品介绍,可以在一天内分析100多个样品。结果表明,该技术为未来的GSR样本鉴定和表征研究开辟了一种新的视角,可以补充SEM / EDX分析。 (c)2018 Elsevier B.v.保留所有权利。

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