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Gas-phase reactions for selective detection of the explosives TNT and RDX

机译:用于选择性检测炸药TNT和RDX的气相反应

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Highly selective gas-phase reactions with ethyl vinyl ether (EVE) of major electron (EI) and chemical ionization (CI) fragment ions of the explosives TNT and RDX have been uncovered. The fragment ion of m/z 210 from TNT undergoes [4~+ + 2] cycloaddition with EVE to form an oxo-iminium ion of mlz 282, which dissociates by acetaldehyde loss after a [1,5-H] shift to form a quinolynium ion of m/z 238. The fragment ion of m/z 149 from RDX reacts with EVE by a formal vinylation reaction, that is, the elusive cyclic adduct loses ethanol to yield a nitro-iminium ion of m/z 175, which reacts further with EVE to form a second cyclic product ion of m/z 247. Calculations and MS/MS experiments support the proposed structures. These highly characteristic reactions of diagnostic EI and CI fragment ions improve selectivity for TNT and RDX detection.
机译:已发现与炸药TNT和RDX的主要电子(EI)的乙基乙烯基醚(EVE)和化学电离(CI)碎片离子发生高度选择性的气相反应。来自TNT的m / z 210的碎片离子与EVE进行[4〜+ 2]环加成反应,形成mlz 282的氧亚胺鎓离子,该离子在[1,5-H]转变为乙醛后因乙醛损失而解离。 m / z 238的喹啉离子。RDX的m / z 149的碎片离子通过正式的乙烯基化反应与EVE反应,即难以捉摸的环状加合物失去乙醇,生成m / z 175的硝基亚硝基离子。与EVE进一步反应形成m / z 247的第二个环状产物离子。计算和MS / MS实验支持所提出的结构。诊断性EI和CI碎片离子的这些高度特征性反应提高了TNT和RDX检测的选择性。

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