首页> 外文期刊>European journal of mass spectrometry >Studies on the formation of N-methylperfluoroalkylnitrile cations from perfluoroacylphenethylamines in electron ionisation mass spectrometry: Unique marker ion fragments in methamphetamine analysis
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Studies on the formation of N-methylperfluoroalkylnitrile cations from perfluoroacylphenethylamines in electron ionisation mass spectrometry: Unique marker ion fragments in methamphetamine analysis

机译:在电子电离质谱法中由全氟酰基苯乙胺形成N-甲基全氟烷基腈阳离子的研究:甲基苯丙胺分析中独特的标记离子片段

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摘要

The mass spectra of the perfluoroacyl derivatives of methamphetamine show a unique and characteristic fragment ion identified as the N- methylperfluoroalkylnitrile cation (C _nF _(2n + 1)CNCH _3) ~+. This ion appears at various m/z values depending on the nature of the perfluoroacyl species and is generated via rearrangement of the perfluoroacyl immonium fragment formed by loss of the benzyl-radical from the molecular ion. Analogous ions have been described in the mass spectra of other methamphetamine-like side chain substances regardless of the aromatic ring substitution pattern. The scope and limitation of this rearrangement pathway were evaluated in this study by preparing a set of substituted phenethylamines and related compounds of varying structure. The perfluoroacyl moiety leads to the formation of the highest abundance of the N-methyl nitrile cation fragment while hydrocarbon acyl groups do not show the N-methylnitrile cation as a significant peak. The N-methyl group is required for the formation of the N-methyl nitrile cation and higher N-alkyl homologues eliminate the corresponding alkene species from the acyl immonium fragment. The loss of benzaldehyde and acetone from the perfluoroacylimmonium species produces the highest relative abundance of the unique N-methylperfluoroalkylnitrile cation.
机译:甲基苯丙胺全氟酰基衍生物的质谱图显示了一个独特且特征性的碎片离子,被识别为N-甲基全氟烷基腈阳离子(C _nF _(2n +1)CNCH _3)〜+。该离子根据全氟酰基种类的性质以各种m / z值出现,并且是通过重排由分子离子中的苄基自由基形成的全氟酰基铵片段而产生的。在其他甲基苯丙胺样侧链物质的质谱图中已描述了类似离子,而与芳环取代模式无关。通过制备一组取代的苯乙胺和不同结构的相关化合物,在本研究中评估了这种重排途径的范围和局限性。全氟酰基部分导致形成最高丰度的N-甲基腈阳离子片段,而烃酰基未显示N-甲基腈阳离子为显着峰。 N-甲基对于形成N-甲基腈阳离子是必需的,并且更高的N-烷基同系物从酰基铵片段中消除了相应的烯烃。全氟酰基铵物种中苯甲醛和丙酮的损失产生了独特N-甲基全氟烷基腈阳离子的最高相对丰度。

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