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基于真空紫外灯的用于正交加速飞行时间质谱的单光子电离和化学电离组合离子源。

Single photon ionization and chemical ionization combined ion source based on a vacuum ultraviolet lamp for orthogonal acceleration time-of-flight mass spectrometry.

机构信息

Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, People's Republic of China.

出版信息

Anal Chem. 2011 Jul 1;83(13):5309-16. doi: 10.1021/ac200742r. Epub 2011 Jun 2.

Abstract

A novel combined ion source based on a vacuum ultraviolet (VUV) lamp with both single photon ionization (SPI) and chemical ionization (CI) capabilities has been developed for an orthogonal acceleration time-of-flight mass spectrometer (oaTOFMS). The SPI was accomplished using a commercial 10.6 eV krypton discharge lamp with a photon flux of about 10(11) photons s(-1), while the CI was achieved through ion-molecule reactions with O(2)(+) reactant ions generated by photoelectron ionization at medium vacuum pressure (MVP). To achieve high ionization efficiency, the ion source pressure was elevated to 0.3 mbar and the photoionization length was extended to 36 mm. As a result, limits of detection (LODs) down to 3, 4, and 6 ppbv were obtained for benzene, toluene, and p-xylene in MVP-SPI mode, and values of 8 and 10 ppbv were obtained for toluene and chloroform, respectively, in SPI-CI mode. As it is feasible to switch between MVP-SPI mode and SPI-CI mode rapidly, this system is capable of monitoring complex organic mixtures with a wide range of ionization energies (IEs). The analytical capacity of this system was demonstrated by measuring dehydrogenation products of long-chain paraffins to olefins through direct capillary sampling and drinking water disinfection byproducts from chlorine through a membrane interface.

摘要

一种新型的组合离子源,基于具有单光子电离 (SPI) 和化学电离 (CI) 功能的真空紫外 (VUV) 灯,已被开发用于正交加速飞行时间质谱仪 (oaTOFMS)。SPI 通过使用商业的 10.6 eV 氪放电灯来实现,其光子通量约为 10(11) 个光子 s(-1),而 CI 通过光电离在中真空压力 (MVP) 下生成的 O(2)(+)反应物离子与分子的离子-分子反应来实现。为了实现高的电离效率,将离子源压力升高到 0.3 mbar,并将光离化长度延长到 36 mm。结果,在 MVP-SPI 模式下,苯、甲苯和对二甲苯的检测限 (LOD) 分别达到 3、4 和 6 ppbv,而在 SPI-CI 模式下,甲苯和氯仿的 LOD 分别为 8 和 10 ppbv。由于可以在 MVP-SPI 模式和 SPI-CI 模式之间快速切换,因此该系统能够监测具有广泛电离能 (IE) 的复杂有机混合物。通过直接毛细管采样测量长链石蜡脱氢产物为烯烃,以及通过膜界面测量饮用水消毒副产物氯,展示了该系统的分析能力。

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