School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, GA, 30332, USA.
ThoMSon Mass Spectrometry Laboratory, Institute of Chemistry, University of Campinas, Campinas, SP, 13083-970, Brazil.
J Am Soc Mass Spectrom. 2016 Jul;27(7):1203-10. doi: 10.1007/s13361-016-1388-y. Epub 2016 Apr 14.
Low molecular weight polar organics are commonly observed in spacecraft environments. Increasing concentrations of one or more of these contaminants can negatively impact Environmental Control and Life Support (ECLS) systems and/or the health of crew members, posing potential risks to the success of manned space missions. Ambient plasma ionization mass spectrometry (MS) is finding effective use as part of the analytical methodologies being tested for next-generation space module environmental analysis. However, ambient ionization methods employing atmospheric plasmas typically require relatively high operation voltages and power, thus limiting their applicability in combination with fieldable mass spectrometers. In this work, we investigate the use of a low power microplasma device in the microhollow cathode discharge (MHCD) configuration for the analysis of polar organics encountered in space missions. A metal-insulator-metal (MIM) structure with molybdenum foil disc electrodes and a mica insulator was used to form a 300 μm diameter plasma discharge cavity. We demonstrate the application of these MIM microplasmas as part of a versatile miniature ion source for the analysis of typical volatile contaminants found in the International Space Station (ISS) environment, highlighting their advantages as low cost and simple analytical devices. Graphical Abstract ᅟ.
在航天器环境中,通常会观察到低分子量极性有机物。这些污染物的浓度增加一种或多种可能会对环境控制和生命支持 (ECLS) 系统产生负面影响,或者对机组人员的健康产生影响,从而对载人航天任务的成功构成潜在风险。环境等离子体电离质谱 (MS) 作为下一代空间模块环境分析中测试的分析方法的一部分,正在得到有效应用。然而,采用大气压等离子体的环境离子化方法通常需要相对较高的操作电压和功率,因此限制了它们与可现场使用的质谱仪结合的适用性。在这项工作中,我们研究了在微空心阴极放电 (MHCD) 配置中使用低功率微等离子体装置来分析太空任务中遇到的极性有机物。采用具有钼箔盘电极和云母绝缘体的金属-绝缘体-金属 (MIM) 结构形成 300μm 直径的等离子体放电腔。我们展示了这些 MIM 微等离子体作为一种通用的微型离子源的应用,用于分析国际空间站 (ISS) 环境中典型挥发性污染物,突出了它们作为低成本和简单分析设备的优势。