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Evaluation of a New Reagent-Ion Source and Focusing Ion-Molecule Reactor for Use in Proton-Transfer-Reaction Mass Spectrometry

机译:用于质子转移反应质谱法的新试剂离子源和聚焦离子分子反应器的评价

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We evaluate the performance of a new chemical ionization source called Vocus, consisting of a discharge reagent-ion source and focusing ion-molecule reactor (FIMR) for use in proton-transfer-reaction time-of-flight mass spectrometry (PTR-TOF) measurements of volatile organic compounds (VOCs) in air. The reagent ion source uses a low-pressure discharge. The FIMR consists of a glass tube with a resistive coating, mounted inside a radio frequency (RF) quadrupole. The axial electric field is used to enhance ion collision energies and limit cluster ion formation. The RF field focuses ions to the central axis of the reactor and improves the detection efficiency of product ions. Ion trajectory calculations demonstrate the mass-dependent focusing of ions and enhancement of the ion collision energy by the RF field, in particular for the lighter ions. Product ion signals are increased by a factor of 10 when the RF field is applied (5000-18 000 cps ppbv(-1)), improving measurement precision and detection limits while operating at very similar reaction conditions as traditional PTR instruments. Because of the high water mixing ratio in the FIMR, we observe no dependence of the sensitivity on ambient sample humidity. In this work, the Vocus is interfaced to a TOF mass analyzer with a mass resolving power up to 12 000, which allows clear separation of isobaric ions, observed at nearly every nominal mass when measuring ambient air. Measurement response times are determined for a range of ketones with saturation vapor concentrations down to 5 x 10(4) mu g m(-3) and compare favorably with previously published results for a PTR-MS instrument.
机译:我们评估新的化学电离源的性能,称为VOCU,由放电试剂离子源和聚焦离子分子反应器(FIMR)组成,用于质子转移 - 反应飞行时间质谱(PTR-TOF)空气中挥发性有机化合物(VOC)的测量。试剂离子源使用低压放电。 FIMR由具有电阻涂层的玻璃管组成,安装在射频(RF)四极杆内。轴向电场用于增强离子碰撞能量和限制簇离子形成。 RF场将离子聚焦到反应器的中心轴上,并提高了产物离子的检测效率。离子轨迹计算证明了离子的质量依赖性聚焦和RF场的离子碰撞能量的增强,特别是对于更轻的离子。当施加RF场(5000-18000CPS PPBB(-1))时,产品离子信号增加了10个倍数10,在以非常相似的反应条件下运行的同时,改善测量精度和检测限值作为传统的PTR仪器。由于FIMR中的水混合比高,我们观察到环境样品湿度的敏感性没有依赖性。在这项工作中,VOCU与高达12 000的质量分辨率相互界面到TOF质量分析仪,这允许在测量环境空气时几乎每一个标称质量观察到异均外离子的清晰分离。测量响应时间是针对饱和蒸汽浓度的一系列酮确定为5×10(4)mu g m(-3)的酮,并与PTR-MS仪器的先前公布的结果有利地比较。

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