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首页> 外文期刊>Journal of mass spectrometry: JMS >Gas-phase protomers of p-(dimethylamino)chalcone investigated by travelling-wave ion mobility mass spectrometry (TWIMS)
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Gas-phase protomers of p-(dimethylamino)chalcone investigated by travelling-wave ion mobility mass spectrometry (TWIMS)

机译:通过行进波离子迁移率质谱(TWIM)研究了P-(二甲基氨基)氯酮的气相重子

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摘要

Results from ion-mobility (IM) separation experiments demonstrate that O- and N-protomers of p-(dimethylamino)chalcone (p-DMAC) can coexist in the gas phase. The relative populations of the two protomers strongly depend on the ion-generating settings and the conditions the precursor ions experience from the point of their gas-phase inception to the time of their detection. Under relatively dry source conditions, the ratio of the gas-phase protomers generated under helium-plasma ionization (HePI) conditions is biased towards the thermodynamically favored O-protomer. However, when the humidity of the enclosed ion source was increased, the IM arrival-time distribution profile of the mass-selected protonated precursor of p-DMAC changed rapidly to one dominated by the N-protomer. Under spray-ionization conditions, the formation of the thermodynamically less favored protomer has been generally attributed to a phenomenon called kinetic trapping. Herein, we demonstrate that the population of thermodynamically less favored N-protomer can be dramatically increased simply by introducing water vapor to the HePI ion source.
机译:离子迁移率(IM)分离实验的结果表明,P-(二甲基氨基)氯酮(P-DMAC)的O-和N-重选酶可以在气相中共存。两种重选酶的相对群体强烈地取决于离子产生的设置和条件,前体离子从它们的气相成立点到检测时间。在相对干燥的源条件下,在氦 - 血浆电离(HEPI)条件下产生的气相引体的比例朝向热力学最有利的O-强制物偏置。然而,当封闭的离子源的湿度增加时,P-DMAC的质量质子化前体的IM到达时间分布曲线迅速变为由N-引体的一个主导。在喷雾电离条件下,热力学上不利的原子聚物的形成通常归因于称为动力学诱捕的现象。在此,我们证明了通过将水蒸气引入到HEPI离子源的情况下,可以显着地增加热力学上不利的N-激素的群体。

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