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使用电子束泵浦稀有气体准分子光源 (EBEL) 的气相色谱-单光子电离 (SPI) 飞行时间质谱 (TOF-MS) 测定不同有机分子的光致电离截面:分子结构的影响及分析意义。

Determination of photoionization cross-sections of different organic molecules using gas chromatography coupled to single-photon ionization (SPI) time-of-flight mass spectrometry (TOF-MS) with an electron-beam-pumped rare gas excimer light source (EBEL): influence of molecular structure and analytical implications.

机构信息

Joint Mass Spectrometry Center, Institute of Ecological Chemistry, Helmholtz Zentrum München, Neuherberg, Germany.

出版信息

Appl Spectrosc. 2011 Jul;65(7):806-16. doi: 10.1366/11-06233.

Abstract

This work describes a fast and reliable method for determination of photoionization cross-sections (PICS) by means of gas chromatography (GC) coupled to single-photon ionization mass spectrometry (SPI-MS). Photoionization efficiency (PIE) data for 69 substances was obtained at a photon energy of 9.8 ± 0.4 eV using an innovative electron-beam-pumped rare gas excimer light source (EBEL) filled with argon. The investigated analytes comprise 12 alkylbenzenes as well as 11 other substituted benzenes, 23 n-alkanes, ten polyaromatic hydrocarbons, seven aromatic heterocycles, and six polyaromatic heterocycles. Absolute PICS for each substance at 9.8 eV are calculated from the relative photoionization efficiencies of the compounds with respect to benzene, whose photoionization cross-section data is well known. Furthermore, a direct correlation between the type of benzene substituents and their absolute PICS is presented and discussed in depth. Finally, comparison of previously measured photoionization cross-sections for 20 substances shows good agreement with the data of the present work.

摘要

本工作描述了一种快速可靠的方法,通过气相色谱(GC)与单光子电离质谱(SPI-MS)联用,测定光致电离截面(PICS)。使用新型电子束泵浦稀有气体准分子光源(EBEL)填充氩气,在光子能量为 9.8±0.4 eV 的条件下,获得了 69 种物质的光致电离效率(PIE)数据。所研究的分析物包括 12 种烷基苯以及 11 种其他取代苯、23 种正构烷烃、10 种多环芳烃、7 种芳香杂环和 6 种多环杂环。对于每种物质在 9.8 eV 的绝对 PICS,是根据化合物相对于苯的相对光致电离效率计算得出的,苯的光致电离截面数据是众所周知的。此外,还提出并深入讨论了苯取代基的类型与其绝对 PICS 之间的直接相关性。最后,对 20 种物质以前测量的光致电离截面进行比较,表明与本工作的数据吻合良好。

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