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使用氮等离子体源的激光烧蚀电感耦合等离子体质谱法。

LA-ICP-MS using a nitrogen plasma source.

作者信息

Neff Christoph, Becker Pascal, Hattendorf Bodo, Günther Detlef

机构信息

Laboratory of Inorganic Chemistry, Department of Chemistry and Applied Biosciences, ETH Zurich Vladimir-Prelog-Weg 1 8093 Zürich Switzerland

出版信息

J Anal At Spectrom. 2021 Jul 19;36(8):1750-1757. doi: 10.1039/d1ja00205h. eCollection 2021 Aug 4.

Abstract

Here we describe the first study of a nitrogen based inductively coupled plasma mass spectrometry system in conjunction with laser ablation (LA-(N-ICP)-MS). Therefore, a microwave-sustained, inductively coupled, atmospheric-pressure plasma source was mounted onto the interface of a quadrupole ICP-MS to investigate the capabilities of such an instrument. The proof of concept study was focused on the quantification capabilities of major to trace elements. Therefore, the plasma background species under dry plasma conditions were investigated to identify the most suitable isotopes for the analysis and to describe the newly formed nitrogen plasma interferences. In addition, the instrumental drift was investigated. Selected elements in the reference materials NIST SRM 612 and BCR-2G were quantified using NIST SRM 610 as an external standard and could be determined within the uncertainty of the reference values. Finally, the limits of detection for LA-(N-ICP)-MS and LA-(Ar-ICP)-MS were compared indicating similar or even lower LODs for most elements using LA-(N-ICP)-MS. Therefore, a nitrogen plasma source coupled to a mass spectrometer could challenge the argon-sustained ICP-MS in element analysis by overcoming argon interferences and has the potential to reduce the plasma gas expenses significantly.

摘要

在此,我们描述了首次将基于氮气的电感耦合等离子体质谱系统与激光烧蚀(LA-(N-ICP)-MS)相结合的研究。因此,将一个微波维持的、电感耦合的大气压等离子体源安装到四极杆电感耦合等离子体质谱仪的接口上,以研究此类仪器的性能。概念验证研究聚焦于从主要元素到痕量元素的定量能力。因此,研究了干等离子体条件下的等离子体背景物质,以确定最适合分析的同位素,并描述新形成的氮等离子体干扰。此外,还研究了仪器漂移。使用NIST SRM 610作为外标对参考物质NIST SRM 612和BCR-2G中的选定元素进行了定量,结果表明在参考值的不确定度范围内可以测定这些元素。最后,比较了LA-(N-ICP)-MS和LA-(Ar-ICP)-MS的检测限,结果表明使用LA-(N-ICP)-MS时,大多数元素的检测限相似甚至更低。因此,与质谱仪耦合的氮等离子体源通过克服氩干扰,在元素分析方面可能对氩维持的电感耦合等离子体质谱构成挑战,并且有可能显著降低等离子体气体费用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39c1/8336630/ff7158aa2818/d1ja00205h-f1.jpg

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