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TW-SLIM 模块的双极性约束、传输和反应设计。

Design of a TW-SLIM Module for Dual Polarity Confinement, Transport, and Reactions.

机构信息

Biological Sciences Division, Pacific Northwest National Laboratory, Richland, WA, 99352, USA.

出版信息

J Am Soc Mass Spectrom. 2017 Jul;28(7):1442-1449. doi: 10.1007/s13361-017-1680-5. Epub 2017 May 30.

Abstract

Here we describe instrumental approaches for performing dual polarity ion confinement, transport, ion mobility separations, and reactions in structures for lossless ion manipulations (SLIM). Previous means of ion confinement in SLIM, based upon rf-generated pseudopotentials and DC fields for lateral confinement, cannot trap ions of opposite polarity simultaneously. Here we explore alternative approaches to provide simultaneous lateral confinement of both ion polarities. Traveling wave ion mobility (IM) separations experienced in such SLIM cause ions of both polarities to migrate in the same directions and exhibit similar separations. The ion motion (and relative motion of the two polarities) under both surfing and IM separation conditions are discussed. In surfing conditions the two polarities are transported losslessly and non-reactively in their respective potential minima (higher absolute voltage regions confine negative polarities, and lower absolute potential regions are populated by positive polarities). In separation mode, where ions roll over an overtaking traveling wave, the two polarities can interact during the rollovers. Strategies to minimize overlap of the two ion populations to prevent reactive losses during separations are presented. A theoretical treatment of the time scales over which two populations (injected into a DC field-free region of the dual polarity SLIM device) interact is considered, and SLIM designs for allowing ion/ion interactions and other manipulations with dual polarities at 4 Torr are presented. Graphical Abstract ᅟ.

摘要

在这里,我们描述了在用于无损离子操控(SLIM)的结构中进行双极离子约束、传输、离子淌度分离和反应的仪器方法。以前基于射频产生的赝势和横向约束的直流场的 SLIM 中的离子约束方法不能同时捕获相反极性的离子。在这里,我们探索了提供同时约束两种离子极性的替代方法。在这样的 SLIM 中经历的行波离子淌度(IM)分离导致两种极性的离子沿相同方向迁移,并表现出相似的分离。讨论了在冲浪和 IM 分离条件下的离子运动(和两种极性的相对运动)。在冲浪条件下,两种极性在各自的势能极小值(更高的绝对电压区域约束负极性,而更低的绝对电势区域被正极性填充)中无损和非反应地传输。在分离模式下,当离子在超越的行波上翻滚时,两种极性可以在翻滚过程中相互作用。提出了在分离过程中最小化两种离子群体重叠以防止反应性损失的策略。考虑了两种群体(注入双极 SLIM 装置的直流场自由区)相互作用的时间尺度的理论处理,并且提出了允许在 4 Torr 下进行双极离子/离子相互作用和其他操作的 SLIM 设计。图形摘要。

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