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单次测量中从碳氢化合物到高度官能化分子:通过多压力化学电离质谱法对复杂气体混合物进行综合分析

From Hydrocarbons to Highly Functionalized Molecules in a Single Measurement: Comprehensive Analysis of Complex Gas Mixtures by Multi-Pressure Chemical Ionization Mass Spectrometry.

作者信息

Shcherbinin Aleksei, Finkenzeller Henning, Mikkilä Jyri, Kontro Jussi, Vinkvist Netta, Kangasluoma Juha, Rissanen Matti

机构信息

Karsa Ltd., Helsinki 00560, Finland.

Institute for Atmospheric and Earth System Research/Department of Physics, Faculty of Science, University of Helsinki, Helsinki 00560, Finland.

出版信息

Anal Chem. 2024 Dec 17;96(50):19926-19932. doi: 10.1021/acs.analchem.4c03859. Epub 2024 Dec 3.

Abstract

Chemical Ionization Mass Spectrometry (CIMS) is a well-established analytical method in atmospheric research, process monitoring, forensics, breathomics, and food science. Despite significant advancements in procedural techniques, several instrument configurations, especially operating at different ionization pressures, are typically needed to analyze the full range of compounds from nonfunctionalized parent compounds to their functionalized reaction products. For polar, functionalized compounds, very sensitive detection schemes are provided by high-pressure adduct-forming chemical ionization techniques, whereas for nonfunctionalized, nonpolar compounds, low-pressure chemical ionization techniques have consistently demonstrated superior performance. Here, using a MION2 chemical ionization inlet and an Orbitrap Exploris 120 mass spectrometer, we present multi-pressure chemical ionization mass spectrometry (MPCIMS), the combination of high- and low-pressure ionization schemes in a single instrument enabling quantification of the full distribution of precursor molecules and their oxidation reaction products from the same stream of gas without alterations. We demonstrate the performance of the new methodology in a laboratory experiment employing a-pinene, a monoterpene relevant to atmospheric particle formation, where MPCIMS allows us to measure the spectrum of compounds ranging from the volatile precursor hydrocarbon to highly functionalized condensable reaction products. MPCIMS carries the potential as an all-in-one method for the analysis of complex gas mixtures, reducing technical complexities and the need for multiple instruments without compromise of sensitivity.

摘要

化学电离质谱法(CIMS)是大气研究、过程监测、法医学、呼吸组学和食品科学领域中一种成熟的分析方法。尽管在程序技术方面取得了重大进展,但通常需要几种仪器配置,特别是在不同电离压力下运行的配置,才能分析从非官能化母体化合物到其官能化反应产物的全范围化合物。对于极性官能化化合物,高压加合物形成化学电离技术提供了非常灵敏的检测方案,而对于非官能化非极性化合物,低压化学电离技术一直表现出卓越的性能。在此,我们使用MION2化学电离进样口和Orbitrap Exploris 120质谱仪,展示了多压力化学电离质谱法(MPCIMS),即在一台仪器中结合高压和低压电离方案,能够对来自同一气流的前体分子及其氧化反应产物的全部分布进行定量分析,且无需改变。我们在一项使用α-蒎烯的实验室实验中展示了这种新方法的性能,α-蒎烯是一种与大气颗粒物形成相关的单萜,在该实验中MPCIMS使我们能够测量从挥发性前体烃到高度官能化可凝反应产物的化合物光谱。MPCIMS有潜力成为一种用于分析复杂气体混合物的一体化方法,可降低技术复杂性并减少对多种仪器的需求,同时不影响灵敏度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b31e/11657529/0345c915a824/ac4c03859_0001.jpg

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