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首页> 外文期刊>Journal of mass spectrometry: JMS >Gas phase reaction between chromones and solvent in an electrospray ionization source
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Gas phase reaction between chromones and solvent in an electrospray ionization source

机译:电喷雾电离源中发铬和溶剂之间的气相反应

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摘要

Chromones were measured by using electrospray ionization mass spectrometry in negative mode. Interestingly, in addition to the deprotonated ion ([M - H](-)), unexpected [M + 17](-) and [M + 31](-) ions were observed in high intensity when water and methanol were used as the solvent. Chromones with different substitutes were tested. Compared with the deprotonated ion, [M + 17](-) and [M + 31](-) ions were observed with higher abundances when the C-3 site of chromones was substituted by electron withdrawing groups. Based on high performance liquid chromatography-mass spectrometry (LC-MS), deuterium-labeling and collisional-induced dissociation experiments, a covalent gas-phase nucleophilic addition reaction between chromone and water, and the formation of a noncovalent complex between chromone and methanol were proposed as the mechanism for the observed [M + 17](-) and [M + 31](-) ions, respectively. Understanding and using these unique gas phase reactions can avoid misannotation when analyzing chromones and their metabolites.
机译:通过在负模式中使用电喷雾电离质谱法测量铬酮。有趣的是,除了使用水和甲醇的高强度观察到的去质子化离子([M-H]( - )),在使用水和甲醇时,在高强度下观察到的意外[M + 17]( - )和[M + 31]( - )离子溶剂。测试了不同替代品的铬酮。与反质离子相比,当用电子抽出基团取代的C-3位点时,观察到[M + 17]( - )和[M + 31]( - )离子以较高的丰富。基于高效液相色谱 - 质谱(LC-MS),氘标记和碰撞诱导的解离实验,铬酮和水之间的共价气相亲核性加成反应,以及在铬酮和甲醇之间形成非共价络合物提出作为观察到的[M + 17]( - )和[M + 31]( - )离子的机制。理解和使用这些独特的气相反应可以避免在分析剪切剪辑时的缺陷和它们的代谢物。

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