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低皮克级水平下化学战剂及相关化合物的直接定量分析:活性毛细管介质阻挡放电等离子体电离与二次电喷雾电离质谱法的比较

Direct quantification of chemical warfare agents and related compounds at low ppt levels: comparing active capillary dielectric barrier discharge plasma ionization and secondary electrospray ionization mass spectrometry.

作者信息

Wolf Jan-Christoph, Schaer Martin, Siegenthaler Peter, Zenobi Renato

机构信息

Department of Chemistry and Applied Bioscience, ETH Zurich , HCI E329, CH-8093 Zurich, Switzerland.

出版信息

Anal Chem. 2015 Jan 6;87(1):723-9. doi: 10.1021/ac5035874. Epub 2014 Dec 10.

Abstract

A novel active capillary dielectric barrier discharge plasma ionization (DBDI) technique for mass spectrometry is applied to the direct detection of 13 chemical warfare related compounds, including sarin, and compared to secondary electrospray ionization (SESI) in terms of selectivity and sensitivity. The investigated compounds include an intact chemical warfare agent and structurally related molecules, hydrolysis products and/or precursors of highly toxic nerve agents (G-series, V-series, and "new" nerve agents), and blistering and incapacitating warfare agents. Well-defined analyte gas phase concentrations were generated by a pressure-assisted nanospray with consecutive thermal evaporation and dilution. Identification was achieved by selected reaction monitoring (SRM). The most abundant fragment ion intensity of each compound was used for quantification. For DBDI and SESI, absolute gas phase detection limits in the low ppt range (in MS/MS mode) were achieved for all compounds investigated. Although the sensitivity of both methods was comparable, the active capillary DBDI sensitivity was found to be dependent on the applied AC voltage, thus enabling direct tuning of the sensitivity and the in-source fragmentation, which may become a key feature in terms of field applicability. Our findings underline the applicability of DBDI and SESI for the direct, sensitive detection and quantification of several CWA types and their degradation products. Furthermore, they suggest the use of DBDI in combination with hand-held instruments for CWAs on-site monitoring.

摘要

一种用于质谱分析的新型活性毛细管介质阻挡放电等离子体电离(DBDI)技术被应用于包括沙林在内的13种与化学战相关化合物的直接检测,并在选择性和灵敏度方面与二次电喷雾电离(SESI)进行了比较。所研究的化合物包括完整的化学战剂及其结构相关分子、高毒性神经毒剂(G系列、V系列和“新型”神经毒剂)的水解产物和/或前体,以及起疱和失能战剂。通过压力辅助纳米喷雾连续热蒸发和稀释产生明确的分析物气相浓度。通过选择反应监测(SRM)实现鉴定。每种化合物最丰富的碎片离子强度用于定量。对于DBDI和SESI,在所研究的所有化合物中,在低ppt范围内(MS/MS模式)均实现了绝对气相检测限。虽然两种方法的灵敏度相当,但发现活性毛细管DBDI的灵敏度取决于所施加的交流电压,从而能够直接调节灵敏度和源内碎片化,这在现场适用性方面可能成为一个关键特性。我们的研究结果强调了DBDI和SESI在直接、灵敏地检测和定量几种化学战剂类型及其降解产物方面的适用性。此外,它们还建议将DBDI与手持式仪器结合用于化学战剂的现场监测。

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