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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Spatial Ion Peak Compression and its Utility in Ion Mobility Spectrometry
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Spatial Ion Peak Compression and its Utility in Ion Mobility Spectrometry

机译:空间离子峰压缩及其在离子迁移谱中的应用

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摘要

A novel concept for ion spatial peak compression is described, and discussed primarily in the context of ion mobility spectrometry (IMS). Using theoretical and numerical methods, the effects of using non-constant (e.g., linearly varying) electric fields on ion distributions (e.g., an ion mobility peak) is evaluated both in the physical and temporal domains. The application of a linearly decreasing electric field in conjunction with conventional drift field arrangements is shown to lead to a reduction in IMS physical peak width. When multiple ion packets (i.e., peaks) in a selected mobility window are simultaneously subjected to such fields, there is ion packet compression (i.e., a reduction in peak widths for all species). This peak compression occurs with only a modest reduction of resolution, which can be quickly recovered as ions drift in a constant field after the compression event. Compression also yields a significant increase in peak intensities. Ion mobility peak compression can be particularly useful for mitigating diffusion-driven peak broadening over very long path length separations (e.g., in cyclic multi-pass arrangements), and for achieving higher S/N and IMS resolution over a selected mobility range.
机译:描述了一种用于离子空间峰压缩的新颖概念,并主要在离子迁移谱(IMS)的背景下进行了讨论。使用理论和数值方法,在物理和时间域中都评估了使用非恒定(例如线性变化)电场对离子分布(例如离子迁移峰)的影响。线性减小的电场与常规漂移场装置的结合使用可导致IMS物理峰宽的减小。当所选迁移率窗口中的多个离子包(即峰)同时受到此类场的影响时,就会发生离子包压缩(即所有物种的峰宽减小)。该峰压缩仅在分辨率适度降低的情况下发生,由于压缩事件发生后离子在恒定场中漂移,因此可以快速恢复分辨率。压缩还会使峰强度显着增加。离子淌度峰压缩对于缓解很长的路径长度间隔(例如,在循环多程布置中)的扩散驱动峰展宽,以及在选定的淌度范围内实现更高的S / N和IMS分辨率特别有用。

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