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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Capillary Atmospheric Pressure Electron Capture Ionization (cAPECI): A Highly Efficient Ionization Method for Nitroaromatic Compounds
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Capillary Atmospheric Pressure Electron Capture Ionization (cAPECI): A Highly Efficient Ionization Method for Nitroaromatic Compounds

机译:毛细管大气压电子捕获电离(cAPECI):硝基芳族化合物的高效电离方法

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摘要

We report on a novel method for atmospheric pressure ionization of compounds with elevated electron affinity (e.g., nitroaromatic compounds) or gas phase acidity (e.g., phenols), respectively. The method is based on the generation of thermal electrons by the photo-electric effect, followed by electron capture of oxygen when air is the gas matrix yielding O_2~– or of the analyte directly with nitrogen as matrix. Charge transfer or proton abstraction by O_2~– leads to the ionization of the analytes. The interaction of UV-light with metals is a clean method for the generation of thermal electrons at atmospheric pressure. Furthermore, only negative ions are generated and neutral radical formation is minimized, in contrast to discharge- or dopant assisted methods. Ionization takes place inside the transfer capillary of the mass spectrometer leading to comparably short transfer times of ions to the high vacuum region of the mass spectrometer. This strongly reduces ion transformation processes, resulting in mass spectra that more closely relate to the neutral analyte distribution. cAPECI is thus a soft and selective ionization method with detection limits in the pptV range. In comparison to standard ionization methods (e.g., PTR), cAPECI is superior with respect to both selectivity and achievable detection limits. cAPECI demonstrates to be a promising ionization method for applications in relevant fields as, for example, explosives detection and atmospheric chemistry.
机译:我们报道了一种新的方法,该方法分别用于具有高电子亲和力的化合物(例如,硝基芳族化合物)或气相酸度(例如,酚)的大气压电离。该方法基于通过光电效应产生热电子,然后在空气是产生O_2〜–的气体基质或直接以氮为基质的分析物的情况下捕获氧的电子。 O_2〜–引起的电荷转移或质子抽象导致分析物的电离。紫外线与金属的相互作用是一种在大气压力下产生热电子的清洁方法。此外,与放电或掺杂辅助方法相比,仅产生负离子,并使中性自由基的形成减至最少。电离发生在质谱仪的传输毛细管内部,导致离子到质谱仪高真空区域的传输时间相对较短。这极大地减少了离子转化过程,从而产生了与中性分析物分布更紧密相关的质谱。因此,cAPECI是一种软且选择性的电离方法,检测极限在pptV范围内。与标准电离方法(例如PTR)相比,cAPECI在选择性和可达到的检测限方面均优越。 cAPECI被证明是一种有前景的电离方法,可用于爆炸物检测和大气化学等相关领域。

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