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Ultra-High Resolution Ion Mobility Separations Utilizing Traveling Waves in a 13 m Serpentine Path Length Structures for Lossless Ion Manipulations Module

机译:利用13 m蛇形路径长度结构中的行波的超高分辨率离子淌度分离实现无损离子处理模块

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摘要

We report the development and initial evaluation of a 13 m path length Structures for Lossless Manipulations (SLIM) module for achieving high resolution separations using traveling waves (TW) with ion mobility (IM) spectrometry. The TW SLIM module was fabricated using two mirror-image printed circuit boards with appropriately configured RF, DC, and TW electrodes and positioned with a 2.75 mm intersurface gap. Ions were effectively confined in field-generated conduits between the surfaces by RF-generated pseudopotential fields and moved losslessly through a serpentine path including 44 “U” turns using TWs. The ion mobility resolution was characterized at different pressures, gaps between the SLIM surfaces, and TW and RF parameters. After initial optimization, the SLIM IM-MS module provided about 5-fold higher resolution separations than present commercially available drift tube or traveling wave IM-MS platforms. Peak capacity and peak generation rates achieved were 246 and 370 s-1, respectively, at a TW speed of 148 m/s. The high resolution achieved in the TW SLIM IM-MS enabled, e.g., isomeric sugars (lacto-N-fucopentaose I and lacto-N-fucopentaose II) to be baseline resolved, and peptides from an albumin tryptic digest were much better resolved than with existing commercial IM-MS platforms. The present work also provides a foundation for the development of much higher resolution SLIM devices based upon both considerably longer path lengths and multipass designs.
机译:我们报告开发和初步评估的13 m路径结构的无损操纵(SLIM)模块,以使用行进波(TW)和离子迁移率(IM)光谱仪实现高分辨率分离。 TW SLIM模块是使用具有适当配置的RF,DC和TW电极的两个镜像印刷电路板制造的,并且其表面间距为2.75 mm。离子被RF产生的伪势场有效地限制在表面之间的场产生导管中,并使用TW无损地通过包括44个“ U”匝的蜿蜒路径移动。在不同压力,SLIM表面之间的间隙以及TW和RF参数的情况下表征了离子迁移率分辨率。经过初步优化后,SLIM IM-MS模块的分离度比市售漂移管或行波IM-MS平台高约5倍。在TW速度为148 m / s的情况下,峰值容量和峰值产生速率分别为246 s和370 s -1 。 TW SLIM IM-MS所实现的高分辨率能够实现基线分离,例如同分异构糖(乳酸-N-岩藻糖I和乳糖-N-岩藻糖II),以及白蛋白胰蛋白酶消化产物中的肽比用胰蛋白酶更好地分离。现有的商业IM-MS平台。当前的工作还为基于更长的路径长度和多通道设计开发更高分辨率的SLIM器件提供了基础。

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