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Mobility-Resolved Ion Selection in Uniform Drift Field Ion Mobility Spectrometry/Mass Spectrometry: Dynamic Switching in Structures for Lossless Ion Manipulations

机译:均匀漂移场离子淌度谱/质谱中的淌度分辨离子选择:无损离子操纵结构中的动态切换

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A Structures for Lossless Ion Manipulations (SLIM) module that allows ion mobility separations and the switching of ions between alternative drift paths is described. The SLIM switch component has a "Tee" configuration and allows the efficient switching of ions between a linear path and a 90-degree bend. By controlling switching times, ions can be efficiently directed to an alternative channel as a function of their mobilities. In the initial evaluation the switch is used in a static mode and shown compatible with high performance ion mobility separations at 4 Torr. In the dynamic mode, we show that mobility-selected ions can be switched into the alternative channel, and that various ion species can be independently selected based on their mobilities for time-of-flight mass spectrometer (TOF MS) IMS detection and mass analysis. This development also provides the basis of, for example, the selection of specific mobilities for storage and accumulation, and the key component of modules for the assembly of SLIM devices enabling much more complex sequences of ion manipulations.
机译:描述了一种无损离子操纵结构(SLIM)模块,该模块允许进行离子迁移性分离和离子在其他漂移路径之间的切换。 SLIM开关组件具有“ T形”配置,可以在线性路径和90度弯曲之间有效地切换离子。通过控制切换时间,可以根据离子的迁移率将其有效地引导至其他通道。在初始评估中,该开关以静态模式使用,显示与4 Torr的高性能离子迁移率分离兼容。在动态模式下,我们显示出可以将迁移率选择的离子切换到替代通道,并且可以基于其迁移率对各种离子种类进行独立选择,以用于飞行时间质谱仪(TOF MS)IMS检测和质量分析。这种发展还提供了例如选择用于存储和积累的特定迁移率的基础,以及用于组装SLIM装置的模块的关键组件,从而实现了更为复杂的离子操纵序列。

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