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首页> 外文期刊>European journal of mass spectrometry >Control of chemical effects in the separation process of a differential mobility mass spectrometer system
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Control of chemical effects in the separation process of a differential mobility mass spectrometer system

机译:差动迁移率质谱仪系统分离过程中化学效应的控制

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摘要

Differential mobility spectrometry (DMS) separates ions on the basis of the difference in their migration rates under high versus tow electric fields. Several models describing the physical nature of this field mobility dependence have been proposed but emerging as a dominant effect is the clusterization model sometimes referred to as the dynamic cluster-decluster model. DMS resolution and peak capacity is strongly influenced by the addition of modifiers which results in the formation and dissociation of clusters. This process increases selectivity due to the unique chemical interactions that occur between an ion and neutral gas-phase molecules. It is thus imperative to bring the parameters influencing the chemical interactions under control and find ways to exploit them in order to improve the analytical utility of the device. In this paper, we describe three important areas that need consideration in order to stabilize and capitalize on the chemical processes that dominate a DMS separation. The first involves means of controlling the dynamic equilibrium of the clustering reactions with high concentrations of specific reagents. The second area involves a means to deal with the unwanted heterogeneous cluster ion populations emitted from the electrospray ionization process that degrade resolution and sensitivity. The third involves fine control of parameters that affect the fundamental collision processes, temperature and pressure.
机译:差分迁移谱法(DMS)根据离子在高电场和牵引电场下的迁移率差异来分离离子。已经提出了几种描述该场迁移率依赖性的物理性质的模型,但是作为主导效应而出现的是聚类模型,有时也称为动态聚类-聚类模型。 DMS的分离度和峰容量受改性剂添加的强烈影响,从而导致团簇的形成和分解。由于离子和中性气相分子之间发生独特的化学相互作用,因此该过程提高了选择性。因此,必须控制影响化学相互作用的参数,并找到利用它们的方法,以提高装置的分析效用。在本文中,我们描述了三个重要的方面,这些方面需要加以考虑,以便稳定并利用主导DMS分离的化学过程。第一种涉及用高浓度的特异试剂控制簇化反应的动态平衡的方法。第二个领域涉及一种处理从电喷雾电离过程中释放出的不想要的异质簇离子种群的手段,这些物质会降低分辨率和灵敏度。第三个涉及对影响基本碰撞过程,温度和压力的参数的精细控制。

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