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首页> 外文期刊>International Journal for Ion Mobility Spectrometry >An NO+ reactant ion source for ion mobility spectrometry
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An NO+ reactant ion source for ion mobility spectrometry

机译:用于离子迁移谱分析的NO +反应离子源

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摘要

The major reactant ion in conventional ion mobility spectrometry (IMS) is the hydronium ion, H3O+ which is produced in the usual ionization sources such as corona discharge or radioactive sources. Using the hydronium reactant ion, mostly the analytes with proton affinity higher than that of water are ionized. A broader range of compounds can be detected by IMS if other alternative ionization channels, such as charge transfer from NO+, are employed. In this work we introduce a simple and novel method for producing NO+ as the major reactant ion in IMS. This was achieved by adding neutral NO to the corona discharge ionization source. The neutral NO was prepared via an additional discharge in an air stream, flowing into the corona discharge source. A curtain plate was mounted in front of the corona discharge to prevent the influence of the analyte on the production of NO+. Using this technique, the reactant ion could easily and quickly switch between the H3O+ and NO+. The performance of the new source was evaluated by recording ion mobility spectra of test compounds with both H3O+ and NO+ reactant ions.
机译:常规离子迁移谱(IMS)中主要的反应物离子是水合氢离子H3O +,它是在通常的电离源(如电晕放电或放射性源)中产生的。使用氢鎓反应物离子,大部分质子亲和力高于水的质子被电离。如果采用其他替代电离通道(例如来自NO +的电荷转移),则IMS可以检测范围更广的化合物。在这项工作中,我们介绍了一种简单而新颖的方法来生产NO +作为IMS中的主要反应物离子。这是通过向电晕放电电离源中添加中性NO来实现的。中性NO是通过在气流中额外放电而制备的,该气流流入电晕放电源。在电晕放电前安装了一块帘板,以防止分析物对NO +产生的影响。使用该技术,反应物离子可以轻松快速地在H3O +和NO +之间切换。通过记录具有H3O +和NO +反应物离子的测试化合物的离子迁移谱,评估了新离子源的性能。

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