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Rectangular Ion Funnel: A New Ion Funnel Interfacefor Structures for LosslessIon Manipulations

机译:矩形离子漏斗:新的离子漏斗界面用于无损结构离子操纵

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摘要

Structures for lossless ion manipulations (SLIM) have recently demonstrated the ability for near lossless ion focusing, transfer, and trapping in subatmospheric pressure regions. While lossless ion manipulations are advantageously applied to the applications of ion mobility separations and gas phase reactions, ion introduction through ring electrode ion funnels or more conventional ion optics to SLIM can involve discontinuities in electric fields or other perturbations that result in ion losses. In this work, we developed and investigated a new funnel design that aims to seamlessly couple to SLIM at the funnel exit. This rectangular ion funnel (RIF) was initially evaluated by ion simulations, fabricated utilizing printed circuit board technology, and tested experimentally. The RIF was integrated to a SLIM-time of flight (TOF) MS system, and the operating parameters, including RF, DC bias of the RIF electrodes, and electric fields for effectively interfacing with a SLIM, were characterized. The RIF provided a 2-fold sensitivity increase without significant discrimination over a wide m/z range and well matched to that of SLIM,along with greatly improved SLIM operational stability.
机译:最近,无损离子操纵(SLIM)的结构证明了在低于大气压的区域内进行接近无损离子聚焦,转移和捕获的能力。尽管无损离子操作有利地应用于离子迁移分离和气相反应的应用,但是通过环形电极离子漏斗或更常规的离子光学器件将离子引入SLIM可能会引起电场中断或其他干扰,从而导致离子损失。在这项工作中,我们开发并研究了一种新的漏斗设计,旨在与漏斗出口处的SLIM无缝耦合。该矩形离子漏斗(RIF)最初通过离子模拟进行了评估,是利用印刷电路板技术制造的,并进行了实验测试。 RIF已集成到SLIM飞行时间(TOF)MS系统中,并且对包括RF,RIF电极的DC偏压以及有效连接SLIM的电场等工作参数进行了表征。 RIF的灵敏度提高了2倍,在较大的m / z范围内没有明显的区别,并且与SLIM的灵敏度非常匹配,以及大大改善了SLIM的运行稳定性。

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