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Achieving High Resolution Ion Mobility Separations Using Traveling Waves in Compact Multiturn Structures for Lossless Ion Manipulations

机译:在紧凑的多匝结构中使用行波实现高分辨率离子迁移分离实现无损离子处理

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摘要

We report on ion mobility (IM) separations achievable using traveling waves (TW) in a Structures for Lossless Ion Manipulations (SLIM) module having a 44 cm path length and 16 90° turns. The performance of the TW-SLIM module was evaluated for ion transmission and IM separations with different RF, TW parameters, and SLIM surface gaps in conjunction with mass spectrometry. In this work, TWs were created by the transient and dynamic application of DC potentials. The module demonstrated highly robust performance and, even with 16 closely spaced turns, achieving IM resolution performance and ion transmission comparable to a similar straight path module. We found an IM peak capacity of ~31 and peak generation rate of 780 s−1 for TW speeds of ~80 m/s using the current multi-turn TW-SLIM module. The separations achieved for isomers of peptides and tetrasaccharides were found to be comparable to those from a ~0.9-m drift tube-based IM-MS platform operated at the same pressure (4 Torr). The combined attributes of flexible design, low voltage requirements and lossless ion transmission through multiple turns for the present TW-SLIM module provides a basis for SLIM devices capable of achieving much greater IM resolution via greatly extended ion path lengths and using compact serpentine designs.
机译:我们报告了在具有44 cm路径长度和16个90°转弯的无损离子操纵(SLIM)模块中使用行波(TW)可实现的离子迁移率(IM)分离。结合质谱分析,评估了TW-SLIM模块在离子传输和IM分离(具有不同的RF,TW参数和SLIM表面间隙)方面的性能。在这项工作中,TW是通过直流电势的瞬态和动态施加而创建的。该模块表现出了很高的鲁棒性,即使具有16个紧密间隔的匝,也可以实现IM分辨率性能和离子传输,可与类似的直线通道模块相媲美。使用当前的多匝TW-SLIM模块,在TW速度为〜80 m / s的情况下,我们发现IM的峰值容量为〜31,峰值产生率为780 s -1 。发现肽和四糖异构体的分离效果与在相同压力(4 Torr)下运行的〜0.9-m漂移管式IM-MS平台的分离效果相当。本TW-SLIM模块灵活的设计,低电压要求和无损传输离子的综合属性,为SLIM器件奠定了基础,该器件能够通过大大延长的离子路径长度和使用紧凑的蛇形设计来实现更大的IM分辨率。

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