首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Investigation and Applications of In-Source Oxidation in Liquid Sampling-Atmospheric Pressure Afterglow Microplasma Ionization (LS-APAG) Source
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Investigation and Applications of In-Source Oxidation in Liquid Sampling-Atmospheric Pressure Afterglow Microplasma Ionization (LS-APAG) Source

机译:烃源氧化在液体采样 - 大气压余量微粘胶离子化(LS-APAG)源的研究和应用

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A liquid sampling-atmospheric pressure afterglow microplasma ionization (LS-APAG) source is presented for the first time, which is embedded with both electrospray ionization (ESI) and atmospheric pressure afterglow microplasma ionization (APAG) techniques. This ion source is capable of analyzing compounds with diverse molecule weights and polarities. An unseparated mixture sample was detected as a proof-of-concept, giving complementary information (both polarities and non-polarities) with the two ionization modes. It should also be noted that molecular mass can be quickly identified by ESI with clean and simple spectra, while the structure can be directly studied using APAG with in-source oxidation. The ionization/oxidation mechanism and applications of the LS-APAG source have been further explored in the analysis of nonpolar alkanes and unsaturated fatty acids/esters. A unique [M + O - 3H](+) was observed in the case of individual alkanes (C-5-C-19) and complex hydrocarbons mixture under optimized conditions. Moreover, branched alkanes generated significant in-source fragments, which could be further applied to the discrimination of isomeric alkanes. The technique also facilitates facile determination of double bond positions in unsaturated fatty acids/esters due to diagnostic fragments (the acid/ester-containing aldehyde and acid oxidation products) generated by on-line ozonolysis in APAG mode. Finally, some examples of in situ APAG analysis by gas sampling and surface sampling were given as well.
机译:首次呈现液体取样 - 大气压余量微血管电离(LS-APAG)源,其嵌入电喷雾电离(ESI)和大气压后微粘血电离(APAG)技术。该离子源能够分析具有不同分子重量和极性的化合物。未分解的混合物样品被检测为概念验证,提供具有两种电离模式的互补信息(两个极性和非极性)。还应注意,通过ESI可以通过清洁和简单的光谱快速识别分子量,而结构可以使用具有源自源氧化的架子直接研究。在非极性烷烃和不饱和脂肪酸/酯的分析中进一步探索了LS-APAG源的电离/氧化机理和应用。在优化条件下,在各种烷烃(C-5-C-19)和复合烃混合物的情况下观察到独特的[M + O-3H](+)。此外,支链烷烃产生了显着的源片段,可以进一步应用于异构烷烃的辨别。该技术还促进了由于在架空模式下在线臭氧产生的诊断片段(含酸/酯/酯醛和酸氧化产物)而产生的不饱和脂肪酸/酯中的双键位置的相应测定。最后,还给出了通过气体取样和表面采样的原位置于原位分析的一些示例。

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