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Atmospheric pressure photoionization Fourier transform ion cyclotron resonance mass spectrometry for complex mixture analysis

机译:大气压光电离傅里叶变换离子回旋共振质谱用于复杂混合物分析

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摘要

We have coupled atmospheric pressure photoionization (APPI) to a home-built 9.4-T Fourier transform ion cyclotron resonance (FT-ICR) mass spectrometer. Analysis of naphtho[2,3-a]pyrene and crude oil mass spectra reveals that protonated molecules, deprotonated molecules, and radical molecular ions are formed simultaneously in the ion source, thereby complicating the spectra (>12 000 peaks per mass spectrum and up to 63 peaks of the same nominal mass), and eliminating the "nitrogen rule" for nominal mass determination of number of nitrogens. Nevertheless, the ultrahigh mass resolving power and mass accuracy of FT-ICR MS enable definitive elemental composition assignments, even for doublets as closely spaced as 1.1 mDa ((SH3C)-C-13 vs C-12(4)). APPI efficiently ionizes nonpolar compounds that are unobservable by electrospray and allows nonpolar sulfur speciation of petrochemical mixtures.
机译:我们已将大气压光电离(APPI)与自制的9.4-T傅里叶变换离子回旋共振(FT-ICR)质谱仪耦合。对萘并[2,3-a] py和原油质谱的分析表明,离子源中同时形成了质子化分子,去质子化分子和自由基分子离子,从而使质谱图复杂化(每个质谱图> 12000个峰且到63个相同标称质量的峰),并消除了确定氮数量的标称质量的“氮规则”。尽管如此,FT-ICR MS的超高质量分辨能力和质量准确度使确定的元素组成分配成为可能,即使是间距为1.1 mDa的双峰((SH3C)-C-13与C-12(4))也是如此。 APPI有效地电离了电喷雾无法观察到的非极性化合物,并允许对石油化学混合物进行非极性硫形成。

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