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.
Anal Chem. 2019 Mar 5;91(5):3733-3739. doi: 10.1021/acs.analchem.9b00112. Epub 2019 Feb 7.
Plasma sources in atmospheric pressure soft-ionization mass spectrometry have gained significant interest in recent years. As many of these sources are used under ambient air conditions, their interaction with the surrounding atmosphere plays an important role in the ionization pathway. This study focuses on the interaction between the plasma source and the surrounding atmosphere by connecting the plasma source to the mass spectrometer using a 2 mm ID closed reactant capillary supplied by a reactant gas up to 500 mL per minute to gain a controlled atmosphere. Different reactant gases (Ar, He, O, and N) and reactant gas mixtures are tested with regard to the DBDI performance and then used to improve the ionization efficiency. Tailoring the controlled atmosphere for a certain analyte, for example, perfluorinated compounds, leads to significantly improved limits of detection up to 2 ppb.
近年来,大气压软电离质谱中的等离子体源引起了广泛关注。由于许多此类源在环境空气条件下使用,因此它们与周围大气的相互作用在电离途径中起着重要作用。本研究通过使用内径为 2 毫米的封闭反应物毛细管将等离子体源连接到质谱仪,将等离子体源与周围大气的相互作用作为重点,该毛细管由每分钟可达 500 毫升的反应物气体供应,以获得受控气氛。不同的反应物气体(Ar、He、O 和 N)和反应物气体混合物被测试,以了解 DBDI 的性能,然后用于提高电离效率。例如,通过为特定分析物(如全氟化合物)定制受控气氛,可以将检测限显著提高至 2 ppb。