Liang Yuxue, Neta Pedatsur, Simón-Manso Yamil, Stein Stephen E
Biomolecular Measurement Division, National Institute of Standards and Technology, Gaithersburg, MD, 20899, USA.
Rapid Commun Mass Spectrom. 2015 Apr 15;29(7):629-36. doi: 10.1002/rcm.7147.
The tandem mass spectra of many compounds contained peaks which could not have arisen from the precursor ion. Such peaks were found to be due to reaction of arylium ions with N2 in the collision cell. Therefore, this reaction was studied in detail with representative compounds.
Various classes of compounds were dissolved in acetonitrile/water/formic acid and studied by electrospray ionization mass spectrometry to record their MS(2) and pseudo-MS(3) spectra in a QqQ mass spectrometer and their accurate m/z values in an Orbitrap Elite instrument. Arylium ions were found to react with N2 in the collision cell. The reaction was confirmed by pseudo-MS(3) studies, by comparison with authentic diazonium ions, and by the pressure dependence of the product ion survival yield.
Reactions of arylium ions with N2 were observed with p-toluenesulfonic acid, o-toluenesulfonamide, phenylphosphonic acid, phenol, aniline, aminonaphthalenes, benzoic acid, benzophenone, and other compounds. By using a QqQ mass spectrometer, we observed that the protonated compounds produce arylium ions, which then react with N2 to form diazonium ions. The diazonium ion was produced with N2 but not with Ar in the collision cell, and its abundance increased with increasing N2 pressure.
Arylium ions generated from a wide variety of compounds in electrospray ionization tandem mass spectrometry may react with N2 to form diazonium ions. The abundance of the diazonium ions is affected by collision energy and N2 pressure. This reaction should be considered when annotating peaks in MS/MS libraries. Published in 2015. This article is a U.S. Government work and is in the public domain in the USA.
许多化合物的串联质谱中包含一些不可能由前体离子产生的峰。发现这些峰是由于芳鎓离子在碰撞池中与N₂反应所致。因此,用代表性化合物对该反应进行了详细研究。
将各类化合物溶解于乙腈/水/甲酸中,通过电喷雾电离质谱进行研究,以在QqQ质谱仪中记录其MS(2)和伪MS(3)谱,并在Orbitrap Elite仪器中记录其精确的m/z值。发现芳鎓离子在碰撞池中与N₂反应。通过伪MS(3)研究、与真实重氮离子比较以及产物离子存活产率对压力的依赖性,证实了该反应。
观察到对甲苯磺酸、邻甲苯磺酰胺、苯膦酸、苯酚、苯胺、氨基萘、苯甲酸、二苯甲酮及其他化合物的芳鎓离子与N₂发生反应。使用QqQ质谱仪时,我们观察到质子化化合物产生芳鎓离子,然后芳鎓离子与N₂反应形成重氮离子。在碰撞池中,重氮离子是由N₂产生而非Ar,其丰度随N₂压力增加而增加。
电喷雾电离串联质谱中由多种化合物产生的芳鎓离子可能与N₂反应形成重氮离子。重氮离子的丰度受碰撞能量和N₂压力影响。在注释MS/MS库中的峰时应考虑该反应。2015年发表。本文为美国政府作品,在美国属于公共领域。