Reinecke Tobias, Leiminger Markus, Jordan Alfons, Wisthaler Armin, Müller Markus
IONICON Analytik GmbH, Eduard-Bodem-Gasse 3, 6020 Innsbruck, Austria.
Department of Chemistry, University of Oslo, Postboks 1033, Blindern, 0315 Oslo, Norway.
Anal Chem. 2023 Aug 15;95(32):11879-11884. doi: 10.1021/acs.analchem.3c02669. Epub 2023 Aug 2.
Proton-transfer-reaction mass spectrometry (PTR-MS) is widely used for measuring organic trace gases in air. In traditional PTR-MS, both nonpolar and polar analytes are ionized with unit efficiency, as predicted from ion-molecule collision theories. This well-defined ion chemistry allows for direct quantification of analytes without prior calibration and therefore is an important characteristic of PTR-MS. In an effort to further increase the sensitivity, recently developed ultrahigh sensitivity chemical ionization mass spectrometry (CIMS) analyzers have, however, been reported to have sacrificed unit ionization efficiency for selected analytes or classes of analytes. We herein report on the development of a novel ultrasensitive PTR-MS instrument, the FUSION PTR-TOF 10k, which exhibits the same universal unit response as conventional PTR-MS analyzers. The core component of this analyzer is the newly designed FUSION ion-molecule reactor, which is a stack of concentric ring electrodes generating a static longitudinal electric field superimposed by a focusing transversal radiofrequency (RF) field. The FUSION PTR-TOF 10k instrument is equipped with an improved ion source, capable of switching between different reagent ions (HO, O, NO, NH) in less than one second. The improved time-of-flight mass spectrometer analyzes / signals with a mass resolution in the 10000-15000 range. FUSION PTR-TOF 10k achieves sensitivities up to 80000 cps ppbV and detection limits down to 0.5 pptV for a 1 s measurement time. We show time-series of naphthalene and C-napthalene as measured in ambient air in Innsbruck for demonstrating the sub-pptV detection capability of this novel FUSION PTR-TOF 10k.
质子转移反应质谱法(PTR-MS)被广泛用于测量空气中的有机痕量气体。在传统的PTR-MS中,正如离子-分子碰撞理论所预测的那样,非极性和极性分析物均以单位效率进行电离。这种明确的离子化学性质使得无需事先校准就能直接对分析物进行定量,因此这是PTR-MS的一个重要特征。然而,为了进一步提高灵敏度,据报道,最近开发的超高灵敏度化学电离质谱(CIMS)分析仪牺牲了某些分析物或某些类别的分析物的单位电离效率。我们在此报告一种新型超灵敏PTR-MS仪器FUSION PTR-TOF 10k的研发情况,它具有与传统PTR-MS分析仪相同的通用单位响应。该分析仪的核心部件是新设计的FUSION离子-分子反应器,它是一组同心环形电极,产生一个静态纵向电场,并叠加一个聚焦横向射频(RF)场。FUSION PTR-TOF 10k仪器配备了改进的离子源,能够在不到一秒的时间内切换不同的试剂离子(HO、O、NO、NH)。改进后的飞行时间质谱仪以10000 - 15000范围内的质量分辨率分析信号。对于1秒的测量时间,FUSION PTR-TOF 10k的灵敏度高达80000 cps ppbV,检测限低至0.5 pptV。我们展示了在因斯布鲁克环境空气中测量的萘和C-萘的时间序列,以证明这种新型FUSION PTR-TOF 10k的亚pptV检测能力。