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High-Resolution Field Asymmetric Waveform Ion Mobility Spectrometry Using New Planar Geometry Analyzers

机译:使用新型平面几何分析仪的高分辨率场非对称波形离子迁移谱

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摘要

Field asymmetric waveform ion mobility spectrometry (FAIMS) has emerged as a powerful tool of broad utility for separation and characterization of gas-phase ions, especially in conjunction with mass spectrometry (MS). In FAIMS, ions are filtered by the dependence of mobility on electric field while being carried by gas flow through the analytical gap between two electrodes of either planar (p-) or cylindrical (c-) geometry. Most FAIMS/MS systems employ c-FAIMS because of its ease of coupling to MS, yet the merits of the two geometries have not been compared in detail. Here, a priori simulations reveal that reducing the FAIMS curvature always improves resolution at equal sensitivity. In particular, the resolving power of p-FAIMS exceeds that of c-FAIMS, typically by a factor of 2-4 depending on the ion species and carrier gas. We have constructed a new planar FAIMS incorporating a curtain plate interface for effective operation with an ESI ion source and joined to an MS using an ion funnel interface with a novel slit aperture. The resolution increases up to 4-fold over existing c-FAIMS, even though the analysis is approx2 times faster. This allows separation of species not feasible in previous FAIMS studies, e.g., protonated leucine and isoleucine or new bradykinin isomers. The improvement for protein conformers (of ubiquitin) is less significant, possibly because of multiple unresolved geometries.
机译:场非对称波形离子迁移谱仪(FAIMS)已成为一种强大的工具,广泛用于气相离子的分离和表征,尤其是与质谱(MS)结合使用时。在FAIMS中,离子通过迁移率与电场的依赖关系被过滤,同时被气流携带通过平面(p-)或圆柱(c-)几何形状的两个电极之间的分析间隙。大多数FAIMS / MS系统都采用c-FAIMS,因为它易于与MS耦合,但是尚未详细比较这两种几何结构的优点。在此,先验仿真显示,减小FAIMS曲率总是可以在相同灵敏度下提高分辨率。特别地,取决于离子种类和载气,p-FAIMS的分辨能力通常超过c-FAIMS的分辨能力2-4倍。我们已经构建了一种新型平面FAIMS,该平面FAIMS结合了用于有效运行ESI离子源的幕板接口,并使用具有新颖狭缝孔径的离子漏斗接口与MS相连。尽管分析速度快了约2倍,但分辨率却比现有c-FAIMS提高了4倍。这允许分离先前的FAIMS研究中不可行的物种,例如质子化的亮氨酸和异亮氨酸或新的缓激肽异构体。 (遍在蛋白的)蛋白质构象异构体的改善作用不那么显着,可能是由于存在多个未解决的几何形状。

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