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Detection of Nitro-Based and Peroxide-Based Explosives by Fast Polarity-Switchable Ion Mobility Spectrometer with Ion Focusing in Vicinity of Faraday Detector

机译:离子聚焦法拉第检测器附近的快速极性可切换离子迁移谱仪检测基于硝基和过氧化物的炸药

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摘要

Ion mobility spectrometer (IMS) has been widely deployed for on-site detection of explosives. The common nitro-based explosives are usually detected by negative IMS while the emerging peroxide-based explosives are better detected by positive IMS. In this study, a fast polarity-switchable IMS was constructed to detect these two explosive species in a single measurement. As the large traditional Faraday detector would cause a trailing reactant ion peak (RIP), a Faraday detector with ion focusing in vicinity was developed by reducing the detector radius to 3.3 mm and increasing the voltage difference between aperture grid and its front guard ring to 591 V, which could remove trailing peaks from RIP without loss of signal intensity. This fast polarity-switchable IMS with ion focusing in vicinity of Faraday detector was employed to detect a mixture of 10 ng 2,4,6-trinitrotoluene (TNT) and 50 ng hexamethylene triperoxide diamine (HMTD) by polarity-switching, and the result suggested that [TNT-H] and [HMTD+H]+ could be detected in a single measurement. Furthermore, the removal of trailing peaks from RIP by the Faraday detector with ion focusing in vicinity also promised the accurate identification of KClO4, KNO3 and S in common inorganic explosives, whose product ion peaks were fairly adjacent to RIP.
机译:离子迁移谱仪(IMS)已广泛用于爆炸物的现场检测。常见的基于硝基的炸药通常由阴性IMS检测,而新兴的基于过氧化物的炸药则最好由阳性IMS检测。在这项研究中,构建了一种快速的极性可切换IMS,可以在一次测量中检测到这两种爆炸物。由于大型传统法拉第检测器会导致反应离子峰(RIP)拖尾,因此通过将检测器半径减小到3.3 mm并将孔径栅网与其前保护环之间的电压差增加到591,开发了一种具有离子聚焦的法拉第检测器。 V,可以在不损失信号强度的情况下从RIP消除尾随峰。这种具有离子聚焦的快速极性可切换IMS在法拉第检测器附近用于通过极性切换来检测10 ng 2,4,6-三硝基甲苯(TNT)和50 ng六亚甲基三氧化二胺(HMTD)的混合物,其结果建议在一次测量中可以检测到[TNT-H] -和[HMTD + H] + 。此外,法拉第探测器通过离子聚焦在附近的法拉第检测仪去除了RIP的拖尾峰,也有望准确鉴定出常见无机炸药中的KClO4,KNO3和S,其产物离子峰与RIP相当接近。

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