Sociedad Europea de Análisis Diferencial de Movilidad SL , P. Tec. Boecillo, Parcela 205, Edificio Cartif, Boecillo, 47151 Valladolid, Spain.
Anal Chem. 2015 Feb 3;87(3):1925-32. doi: 10.1021/ac504178n. Epub 2015 Jan 14.
A prototype is introduced based on the transversal modulation ion mobility spectrometry (TMIMS) technique, which provides a continuous output of mobility-selected ions, greatly easing the synchronization between different analyzing stages. In the new architecture, two stages of filtration are used to drastically reduce the background produced by one stage alone. Two-stages TMIMS was coupled with two different atmospheric pressure interface mass spectrometers (MS). The new system enables IMS-IMS-MS analysis and other modes of operation: IMS prefiltration, IMS-IMS, and full transmission mode. It provides a resolving power R > 60 in IMS mode, and R > 40 in each stage of IMS-IMS mode. 2-Propanol vapors were introduced in one of the stages to enhance the mobility variations, and their effect was studied on a set of tetraalkylammonium ions. We found that concentrations as low as 1% (in partial pressure) produce mobility variations as high as 20%, which suggest that IMS-IMS separation using dried N2 (in one stage) and a dopant (in the other stage), could be a very powerful way to enhance the separation capacity of the IMS-IMS prefiltration approach.
介绍了一种基于横向调制离子淌度谱(TMIMS)技术的原型,该技术提供了连续输出的迁移率选择离子,极大地简化了不同分析阶段之间的同步。在新架构中,使用两个过滤阶段来大大降低仅一个阶段产生的背景。两阶段 TMIMS 与两种不同的大气压接口质谱仪(MS)耦合。新系统能够实现 IMS-IMS-MS 分析和其他操作模式:IMS 预过滤、IMS-IMS 和全传输模式。它在 IMS 模式下提供>60 的分辨率 R,在 IMS-IMS 模式的每个阶段提供>40 的分辨率 R。在其中一个阶段引入了异丙醇蒸气以增强迁移率变化,并研究了其对一组四烷基铵离子的影响。我们发现,浓度低至 1%(分压)就会产生高达 20%的迁移率变化,这表明使用干燥氮气(在一个阶段)和掺杂剂(在另一个阶段)的 IMS-IMS 分离,可能是增强 IMS-IMS 预过滤方法分离能力的一种非常有效的方法。