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Laser Ablation Coupled to a Flowing Atmospheric Pressure Afterglow for Ambient Mass Spectral Imaging

机译:激光烧蚀耦合到流动的大气压余辉,用于环境质谱成像

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A plasma-based ambient desorption/ionization mass spectrometry (ADI-MS) source was used to perform molecular mass spectral imaging. A small amount of sample material was ablated by focusing 266 nm laser light onto a spot. The resulting aerosol was transferred by a nitrogen stream to the flowing afterglow of a helium atmospheric pressure glow discharge ionization source; the ionized sample material was analyzed by a Leco Unique time-of-flight mass spectrometer. Two-dimensional mass spectral images were generated by scanning the laser beam across a sample surface. The total analysis time for a 6 mm~(2) surface, which is limited by the washout of the ablation chamber, was less than 30 min. With this technique, a spatial resolution of approx20 (mu)m has been achieved. Additionally, the laser ablation configuration was used to obtain depth information of over 2 mm with a resolution of approx40 (mu)m. The combination of laser ablation with the flowing atmospheric pressure afterglow source was used to analyze several sample surfaces for a wide variety of analytes and with high sensitivity (LOD of 5 fmol for caffeine).
机译:基于等离子体的环境解吸/电离质谱(ADI-MS)源用于执行分子质谱成像。通过将266 nm激光聚焦到斑点上来烧蚀少量样品材料。产生的气溶胶通过氮气流转移到氦大气压辉光放电电离源的余辉中。电离的样品材料通过Leco Unique飞行时间质谱仪进行分析。通过在样品表面上扫描激光束来生成二维质谱图。 6 mm〜(2)表面的总分析时间少于30分钟,该时间受消融室冲洗的限制。利用这种技术,已经实现了大约20μm的空间分辨率。另外,激光烧蚀配置被用于以约40μm的分辨率获得超过2mm的深度信息。激光烧蚀与流动的大气压余辉源相结合,可用于分析多种样品表面的多种分析物,并具有很高的灵敏度(咖啡因的LOD为5 fmol)。

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