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Detection of Explosives and Related Compounds by Low-Temperature Plasma Ambient Ionization Mass Spectrometry

机译:低温等离子体环境电离质谱法检测炸药及相关化合物

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Detection of explosives is important for public safety. A recently developed low-temperature plasma (LTP) probe for desorption and ionization of samples in the ambient environment (Anal. Chem. 2008, 80, 9097) is applied in a comprehensive evaluation of analytical performance for rapid detection of 13 explosives and explosives-related compounds. The selected chemicals [pentaerythritol tetranitrate (PETN), trinitrotoluene (TNT), cyclo-1,3,5-trimethylenetrinitramine (RDX), tetryl, cyclo-1,3,5,7-tetramethylenetetranitrate (HMX), hexamethylene triperoxide diamine (HMTD), 2,4-dinitrotoluene, 1, 3-dinitrobenzene, 1,3,5-trinitrobenzene, 2-amino-4,6-dinitrotoluene, 4-amino-2,6-dinitrotoluene, 2,6-dinitrotoluene, and 4-nitrotoluene) were tested at levels in the range 1 pg-10 ng. Most showed remarkable sensitivity in the negative-ion mode, yielding limits of detection in the low picogram range, particularly when analyzed from a glass substrate heated to 120 deg C. Ions typically formed from these molecules (M) by LTP include [M + NO_(2)]~(-), [M]~(-), and [M - NO_(2)]~(-). The LTP-mass spectrometry methodology displayed a linear signal response over three orders of magnitude of analyte amount for the studied explosives. In addition, the effects of synthetic matrices and different types of surfaces were evaluated. The data obtained demonstrate that LTP-MS allows detection of ultratrace amounts of explosives and confirmation of their identity. Tandem mass spectrometry (MS/MS) was used to confirm the presence of selected explosives at low levels; for example, TNT was confirmed at absolute levels as low as 0.6 pg. Linearity and intra-and interday precision were also evaluated, yielding results that demonstrate the potential usefulness and ruggedness of LTP-MS for the detection of explosives of different classes. The use of ion/molecule reactions to form adducts with particular explosives such as RDX and HMX was shown to enhance the selectivity and specificity. This was accomplished by merging the discharge gas with an appropriate reagent headspace vapor (e.g., from a 0.2percent trifluoracetic acid solution).
机译:爆炸物的检测对于公共安全很重要。最近开发的用于在环境中解吸和离子化样品的低温等离子体(LTP)探针(Anal。Chem。2008,80,9097)用于全面评估13种爆炸物和爆炸物的分析性能,包括:相关化合物。选定的化学品[季戊四醇四硝酸酯(PETN),三硝基甲苯(TNT),环1,3,5-三亚甲基三硝胺(RDX),替特尔,环1,3,5,7-四亚甲基四硝酸酯(HMX),六亚甲基三氧化二胺(HMTD) ),2,4-二硝基甲苯,1、3-二硝基苯,1,3,5-三硝基苯,2-氨基-4,6-二硝基甲苯,4-氨基-2,6-二硝基甲苯,2,6-二硝基甲苯和4 (-硝基甲苯)的浓度范围为1 pg-10 ng。大多数样品在负离子模式下显示出显着的灵敏度,在低皮克范围内产生检测极限,尤其是在加热到120摄氏度的玻璃基板上进行分析时。通过LTP通常由这些分子(M)形成的离子包括[M + NO_ (2)]〜(-),[M]〜(-)和[M-NO_(2)]〜(-)。 LTP质谱法显示了所研究炸药在三个数量级分析物数量上的线性信号响应。另外,评估了合成基质和不同类型表面的效果。获得的数据表明,LTP-MS可以检测超痕量的爆炸物并确认其身份。串联质谱法(MS / MS)用于确定低水平爆炸物的存在。例如,确定的TNT绝对水平低至0.6 pg。还评估了线性以及日间和日间精度,得出的结果证明了LTP-MS在检测不同类别爆炸物方面的潜在实用性和耐用性。已证明使用离子/分子反应与特定的炸药(如RDX和HMX)形成加合物可增强选择性和特异性。这是通过使放电气体与合适的试剂顶空蒸气(例如,来自0.2%的三氟乙酸溶液)合并而实现的。

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