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氮气直接实时分析质谱(DART-MS)中的氮激活氧化作用,以及使用热解吸 DART-MS 快速检测爆炸物。

Nitrogen-Activated Oxidation in Nitrogen Direct Analysis in Real Time Mass Spectrometry (DART-MS) and Rapid Detection of Explosives Using Thermal Desorption DART-MS.

机构信息

Key Laboratory of Cluster Science, Ministry of Education of China; Beijing Key Laboratory of Photoelectronic/Electrophotonic Conversion Materials; School of Chemistry, Beijing Institute of Technology, Beijing, 100081, China.

出版信息

J Am Soc Mass Spectrom. 2019 Oct;30(10):2092-2100. doi: 10.1007/s13361-019-02279-3. Epub 2019 Jul 31.

DOI:10.1007/s13361-019-02279-3
PMID:31368004
Abstract

Direct analysis in real time mass spectrometry (DART-MS) was used to analyze an array of explosives including nitro-based explosives, peroxide explosives, and energetic heterocyclic compounds with different DART discharge gases (helium, argon, and nitrogen). Profound analyte oxidation was observed for particular compounds (TNT (9) and 2, 4-DNT (10)), whose mass spectra were completely dominated by the oxidation products when nitrogen was substituted for helium in DART analysis. This interesting phenomenon suggested that a highly oxidative environment provided by N DART ion source. A possible mechanism involved in nitrogen DART was proposed which may help further understanding the different chemistry involved in the ionization process. This work also presents a thermal desorption DART (TD-DART) configuration that can enable rapid, specific analysis of explosives from swipes. The screening of swipes with three different compositions (fiberglass, Hybond N membrane, and filter paper) showed that fiberglass swipe has the best performance which was then used for the subsequent TD-DART analysis. A direct comparison of TD-DART with traditional DART demonstrated that TD-DART indeed gives better response than traditional DART (provided that the distance between the DART source and mass spectrometer is the same) and will have wider applications than traditional DART.

摘要

直接实时分析质谱(DART-MS)用于分析一系列爆炸物,包括含硝基的爆炸物、过氧化物爆炸物和不同 DART 放电气体(氦气、氩气和氮气)的高能杂环化合物。对于某些化合物(TNT(9)和 2,4-DNT(10)),观察到明显的分析物氧化,当氮气替代氦气用于 DART 分析时,其质谱完全由氧化产物主导。这种有趣的现象表明,氮 DART 离子源提供了一个高度氧化的环境。提出了一种可能涉及的氮 DART 机制,这可能有助于进一步理解电离过程中涉及的不同化学。本工作还介绍了一种热解吸 DART(TD-DART)配置,可实现从擦拭物中快速、特异性地分析爆炸物。对三种不同成分(玻璃纤维、Hybond N 膜和滤纸)的擦拭物进行的筛选表明,玻璃纤维擦拭物的性能最佳,随后用于随后的 TD-DART 分析。TD-DART 与传统 DART 的直接比较表明,TD-DART 确实比传统 DART 具有更好的响应(只要 DART 源和质谱仪之间的距离相同),并且将比传统 DART 具有更广泛的应用。

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