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Flow injection of liquid samples to a mass spectrometer with ionization under vacuum conditions: a combined ion source for single-photon and electron impact ionization

机译:在真空条件下通过电离将液体样品流注到质谱仪中:用于单光子和电子碰撞电离的组合离子源

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摘要

Electrospray ionization (ESI), atmospheric pressure chemical ionization (APCI), and atmospheric pressure photo-ionization (APPI) are the most important techniques for the ionization of liquid samples. However, working under atmospheric pressure conditions, all these techniques involve some chemical rather than purely physical processes, and therefore, side reactions often yield to matrix-dependent ionization efficiencies. Here, a system is presented that combines both soft single-photon ionization (SPI) and hard 70 eV electron impact ionization (EI) of dissolved compounds under vacuum conditions. A quadrupole mass spectrometer was modified to enable direct EI, a technique developed by Cappiello et al. to obtain library-searchable EI mass spectra as well as soft SPI mass spectra of sample solutions. An electron beam-pumped rare gas excimer lamp working at 126 nm was used as well as a focusable vacuum UV light source for single-photon ionization. Both techniques, EI and SPI, were applied successfully for flow injection experiments providing library-matchable EI fragment mass spectra and soft SPI mass spectra, showing dominant signals for the molecular ion. Four model compounds were analyzed: hexadecane, propofol, chlorpropham, and eugenol, with detection limits in the picomolar range. This novel combination of EI and SPI promises great analytical benefits, thanks to the possibility of combining database alignment for EI data and molecular mass information provided by SPI. Possible applications for the presented ionization technology system are a matrix-effect-free detection and a rapid screening of different complex mixtures without time-consuming sample preparation or separation techniques (e.g., for analysis of reaction solutions in combinatorial chemistry) or a switchable hard (EI) and soft (SPI) MS method as detection step for liquid chromatography.
机译:电喷雾电离(ESI),大气压化学电离(APCI)和大气压光电离(APPI)是液体样品电离的最重要技术。但是,在大气压力条件下工作时,所有这些技术都涉及某些化学过程而非纯粹的物理过程,因此,副反应通常会产生依赖于基质的电离效率。在这里,提出了一种在真空条件下将溶解的化合物的软单光子电离(SPI)和硬70 eV电子碰撞电离(EI)结合在一起的系统。修改了四极质谱仪以实现直接EI,这是Cappiello等人开发的技术。获得样品库溶液的EI质谱图和SPI质谱图。使用电子束泵浦稀有气体准分子灯工作在126 nm以及可聚焦的真空紫外光源进行单光子电离。 EI和SPI这两种技术均成功用于流动注射实验,提供了谱库匹配的EI片段质谱和软SPI质谱,显示了分子离子的主导信号。分析了四种模型化合物:十六烷,丙泊酚,氯丙胺和丁香酚,检出限在皮摩尔范围内。 EI和SPI的这种新颖组合有望带来巨大的分析优势,这是由于可以将EI数据的数据库对齐方式与SPI提供的分子量信息相结合。所提出的电离技术系统的可能应用是无基质效应检测和快速筛选不同的复杂混合物,而无需耗时的样品制备或分离技术(例如,用于分析组合化学中的反应溶液)或可切换的硬质分析仪( EI)和软(SPI)MS方法作为液相色谱检测步骤。

著录项

  • 来源
    《Analytical and Bioanalytical Chemistry》 |2013年第22期|6953-6957|共5页
  • 作者单位

    Joint Mass Spectrometry Centre Chair of Analytical Chemistry Institute of Chemistry University of Rostock">(1);

    Joint Mass Spectrometry Centre Cooperation Group for Analysis of Complex Molecular Systems Institute of Ecological Chemistry Helmholtz Zentrum München—German Research Center for Environmental Health (GmbH)">(2);

    Joint Mass Spectrometry Centre Chair of Analytical Chemistry Institute of Chemistry University of Rostock">(1);

    Joint Mass Spectrometry Centre Cooperation Group for Analysis of Complex Molecular Systems Institute of Ecological Chemistry Helmholtz Zentrum München—German Research Center for Environmental Health (GmbH)">(2);

    Joint Mass Spectrometry Centre Chair of Analytical Chemistry Institute of Chemistry University of Rostock">(1);

    Joint Mass Spectrometry Centre Cooperation Group for Analysis of Complex Molecular Systems Institute of Ecological Chemistry Helmholtz Zentrum München—German Research Center for Environmental Health (GmbH)">(2);

    DiSTeVA LC-MS Laboratory University of Urbino">(3);

    DiSTeVA LC-MS Laboratory University of Urbino">(3);

    Joint Mass Spectrometry Centre Chair of Analytical Chemistry Institute of Chemistry University of Rostock">(1);

    Joint Mass Spectrometry Centre Cooperation Group for Analysis of Complex Molecular Systems Institute of Ecological Chemistry Helmholtz Zentrum München—German Research Center for Environmental Health (GmbH)">(2);

    CMA/Helmholtz Zentrum München">(4);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Single-photon ionization; EBEL; Direct EI; Mass spectrometry;

    机译:单光子电离;玉宝;直接EI;质谱;

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