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Loss of atomic nitrogen from even-electron ions? A study on benzodiazepines

机译:电子偶氮原子损失原子氮?苯二氮卓类药物的研究

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The fragment spectra of protonated nitro-substituted benzodiazepines show an unusual fragment [M + H - 14](+), which is shown by accurate mass measurement to be due to the loss of a nitrogen atom. Our investigations show that this apparent loss of atomic nitrogen is rather an attachment of molecular oxygen to the [M + H - NO2](+center dot) ion, which is the main fragment ion in these spectra. The oxygen attachment is exothermic, and rate constants have been derived. MSn spectra show that it is not easily reversible upon fragmentation of the adduct ion and that it is also observed with some secondary and tertiary fragments, which allows to limit the attachment site to the aromatic ring annulated to the diazepine moiety. Fragments of the oxygen adduct ion indicate that the O-2 molecule dissociates in the adduct formation process, and the two oxygen atoms are bound to different sites of the ion. Comparison with radical cations generated by fragmentation of non-nitro-substituted benzodiazepines, none of which showed an oxygen attachment, and the fragmentation mechanisms involved in their formation indicates that the [M + H - NO2](+center dot) ion is a distonic ion with the charge and radical site neighbored on the aromatic ring. From these results, we derive a proposal for the formation and structure of the [M + H - NO2 + O-2](+center dot) ion, which explains the experimental observations. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:质子化的硝基取代苯并二氮杂s的碎片光谱显示出不寻常的碎片[M + H-14](+),该碎片通过精确的质量测量显示是由于氮原子的损失所致。我们的研究表明,原子氮的这种明显损失实际上是分子氧与[M + H-NO2](+中心点)离子的附着,后者是这些光谱中的主要碎片离子。氧附着是放热的,并且已经得出速率常数。 MSn光谱表明,加合物离子断裂后,它不容易逆转,并且还发现了一些仲和叔片段,这使结合位点限制在环化成二氮杂moiety部分的芳环上。氧加合物离子的碎片表明O-2分子在加合物形成过程中解离,并且两个氧原子键合到离子的不同位置。与由非硝基取代的苯二氮杂物的碎裂产生的自由基阳离子比较,后者均未显示氧连接,并且其形成所涉及的碎裂机理表明[M + H-NO2](+中心点)离子是扭曲的离子,其电荷和自由基位点在芳环上。从这些结果,我们提出了关于[M + H-NO2 + O-2](+中心点)离子的形成和结构的建议,它解释了实验观察结果。版权所有(C)2015 John Wiley&Sons,Ltd.

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