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Solid-Phase Microextraction Coupled to Capillary Atmospheric Pressure Photoionization-Mass Spectrometry for Direct Analysis of Polar and Nonpolar Compounds

机译:固相微萃取偶联至毛细管大气压光离析质谱法,用于直接分析极性和非极性化合物

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摘要

A novel capillary ionization source based on atmospheric pressure photo-ionization (cAPPI) was developed and used for the direct interfacing between solid-phase microextraction (SPME) and mass spectrometry (MS). The efficiency of the source was evaluated for direct and dopant-assisted photoionization, analyzing both polar (e.g., triazines and organophosphorus pesticides) and nonpolar (polycyclic aromatic hydrocarbons, PAHs) compounds. The results show that the range of compound polarity, which can be addressed by direct SPME-MS can be substantially extended by using cAPPI, compared to other sensitive techniques like direct analysis in real time (DART) and dielectric barrier discharge ionization (DBDI). The new source delivers a very high sensitivity, down to sub parts-per-trillion (ppt), making it a viable alternative when compared to previously reported and less comprehensive direct approaches.
机译:基于大气压光电电离(CAPPI)的新型毛细管电离源,并用于固相微萃取(SPME)和质谱(MS)之间的直接接口。 评估源的效率,用于直接和掺杂剂辅助的光相,分析极性(例如,三嗪和有机磷杀虫剂)和非极性(多环芳烃,PAHS)化合物。 结果表明,通过在实时分析(DART)和介电阻挡放电电离(DBDI)中的直接分析等其他敏感技术相比,可以通过使用CAPPI基本上延伸,可以通过直接SPME-MS寻址的复合极性的范围。 新来源提供了非常高的灵敏度,达到每亿(PPT),使其成为可行的替代方案,与先前报道和更少的全面的直接方法相比。

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