Department of Physics, University of Oviedo, c/ Federico García Lorca 18, 33007, Oviedo, Spain.
Department of Physical and Analytical Chemistry, University of Oviedo, Avda. Julián Clavería 8, 33006, Oviedo, Spain.
Anal Chim Acta. 2018 Dec 14;1038:59-66. doi: 10.1016/j.aca.2018.08.013. Epub 2018 Aug 7.
An improved gas sample introduction interface is developed and characterized for gas chromatography coupling and for direct injection of volatile organic compounds (VOCs), in a pulsed glow discharge (pulsed-GD) ion source coupled to a time of flight mass spectrometer (TOFMS) that is typically used for direct solid analysis. The novel interface allows the introduction of the analytes in the flowing afterglow region of the GD (a few mm away from the negative glow region) to reduce plasma quenching effects. Analyte ion signals are acquired in the temporal afterglow region, where low fragmentation of the molecular species is produced, providing useful qualitative and quantitative molecular information (e.g. molecular ion). Analytical capabilities of the pulsed-GD ion source with the novel gas sampling interface provides improved performance compared to previous designs. In particular, limits of detection for the analysis of VOCs in air were below (better) that legally established limits according to Directive 2008/50/EC of the European Parliament.
开发并表征了一种改进的气体样品引入接口,用于气相色谱联用和挥发性有机化合物(VOCs)的直接进样,在与飞行时间质谱仪(TOFMS)耦合的脉冲辉光放电(脉冲-GD)离子源中,该接口通常用于直接固体分析。新型接口允许将分析物引入 GD 的流光区(远离负辉区几毫米处),以减少等离子体猝灭效应。在时间流光区中获取分析物离子信号,在该区域中产生的分子种类的碎片化程度较低,提供有用的定性和定量分子信息(例如分子离子)。与先前的设计相比,带有新型气体采样接口的脉冲-GD 离子源具有更好的分析性能。特别是,空气中 VOCs 的分析检测限低于(优于)根据欧洲议会 2008/50/EC 指令规定的法定限值。