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软氩气-丙烷介质阻挡放电电离。

Soft Argon-Propane Dielectric Barrier Discharge Ionization.

机构信息

Leibniz-Institut für Analytische Wissenschaften-ISAS-e.V. , Bunsen-Kirchhoff-Straße 11 , 44139 Dortmund , Germany.

Analytical Chemistry Research Group , University of Jaén , Campus Las Lagunillas , 23071 Jaén , Spain.

出版信息

Anal Chem. 2018 Mar 6;90(5):3537-3542. doi: 10.1021/acs.analchem.7b05390. Epub 2018 Feb 26.

Abstract

Dielectric barrier discharges (DBDs) have been used as soft ionization sources (DBDI) for organic mass spectrometry (DBDI-MS) for approximately ten years. Helium-based DBDI is often used because of its good ionization efficiency, low ignition voltage, and homogeneous plasma conditions. Argon needs much higher ignition voltages than helium when the same discharge geometry is used. A filamentary plasma, which is not suitable for soft ionization, may be produced instead of a homogeneous plasma. This difference results in N, present in helium and argon as an impurity, being Penning-ionized by helium but not by metastable argon atoms. In this study, a mixture of argon and propane (CH) was used as an ignition aid to decrease the ignition and working voltages, because propane can be Penning-ionized by argon metastables. This approach leads to homogeneous argon-based DBDI. Furthermore, operating DBDI in an open environment assumes that many uncharged analyte molecules do not interact with the reactant ions. To overcome this disadvantage, we present a novel approach, where the analyte is introduced in an enclosed system through the discharge capillary itself. This nonambient DBDI-MS arrangement is presented and characterized and could advance the novel connection of DBDI with analytical separation techniques such as gas chromatography (GC) and high-pressure liquid chromatography (HPLC) in the near future.

摘要

介质阻挡放电(DBD)已经作为软电离源(DBDI)用于有机质谱(DBDI-MS)约十年了。由于氦具有良好的电离效率、低点火电压和均匀的等离子体条件,因此常被用于基于氦的 DBDI。当使用相同的放电几何形状时,氩需要比氦高得多的点火电压。丝状等离子体,不适合软电离,可能会产生而不是均匀的等离子体。这种差异导致氮,以杂质形式存在于氦和氩中,被氦彭宁电离,但不会被亚稳氩原子电离。在这项研究中,使用氩和丙烷(CH)的混合物作为点火助剂,以降低点火和工作电压,因为丙烷可以被氩亚稳态电离。这种方法导致基于氩的均匀 DBDI。此外,在开放环境中操作 DBDI 假设许多未带电的分析物分子不会与反应离子相互作用。为了克服这个缺点,我们提出了一种新的方法,其中分析物通过放电毛细管本身引入封闭系统。本文介绍并表征了这种非环境 DBDI-MS 装置,它可能会在不久的将来推动 DBDI 与分析分离技术(如气相色谱(GC)和高压液相色谱(HPLC))的新型连接。

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