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配备摆线电子单色仪的共振电子捕获飞行时间质谱仪。

A resonant electron capture time-of-flight MS with trochoidal electron monochromator.

作者信息

Voinov Valery G, Vasil'ev Yury V, Morré Jeff, Barofsky Douglas F, Deinzer Max L, Gonin Marc, Egan Thomas F, Führer Katrin

机构信息

Department of Chemistry and Environmental Health Sciences Center, Oregon State University, Corvallis, Oregon 97331, USA.

出版信息

Anal Chem. 2003 Jul 1;75(13):3001-9. doi: 10.1021/ac030019v.

Abstract

A prototype electron monochromator (EM) reflectron time-of-flight (TOF) mass spectrometer has been constructed and demonstrated to record resonant electron capture (REC) mass spectra of electron-capturing compounds. The electron energy is ramped from -1.7 to +25 eV at a preset frequency, and the energy spread of the electron beam at 15 nA is 100 meV or better. Ions are orthogonally extracted into the analyzer at a frequency of up to 80 kHz while maintaining an upper m/z-limit of at least 300 and a mass resolving power of approximately 1000. A complete REC mass spectrum, which includes an effective yield versus electron energy curve for each negative ion formed from the compound being analyzed, typically takes several days to produce with a quadrupole or magnetic sector mass spectrometer. With the EM TOF described in this work, three-dimensional negative ion electron capture spectra are recorded in an interval on the order of only 1 s and displayed in real time. This new analytical capability could make it possible to perform GC REC mass spectrometry as well as easier (a) to measure the temperature dependence of REC cross sections, (b) to determine enthalpies of negative ion formation (accurate determination of the enthalpy of ion formation requires knowledge of the translational energy released during a dissociative capture event), and (c) to provide complete thermochemical descriptions of dissociative electron attachment by measuring ion lifetimes.

摘要

已构建了一台原型电子单色仪(EM)反射式飞行时间(TOF)质谱仪,并证明其可记录电子捕获化合物的共振电子捕获(REC)质谱。电子能量以预设频率从-1.7 eV 升至+25 eV,15 nA 电子束的能量分散为 100 meV 或更低。离子以高达 80 kHz 的频率正交提取到分析仪中,同时保持至少 300 的 m/z 上限和约 1000 的质量分辨能力。使用四极杆或磁扇形质谱仪生成完整的 REC 质谱(包括针对由被分析化合物形成的每个负离子的有效产率与电子能量曲线)通常需要数天时间。利用本文所述的 EM TOF,三维负离子电子捕获光谱在仅约 1 s 的时间间隔内记录并实时显示。这种新的分析能力使得进行气相色谱 REC 质谱分析成为可能,并且更易于(a)测量 REC 截面的温度依赖性,(b)确定负离子形成焓(准确确定离子形成焓需要了解解离捕获事件中释放的平动能),以及(c)通过测量离子寿命提供解离电子附着的完整热化学描述。

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