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大气压下用脉冲电子枪进行离子-离子复合研究。

Investigation of ion-ion-recombination at atmospheric pressure with a pulsed electron gun.

机构信息

Institute of Electrical Engineering and Measurement Technology, Department of Sensors and Measurement Technology, Leibniz University Hanover, Appelstr. 9a, Hanover, Germany.

出版信息

Analyst. 2012 Nov 7;137(21):5105-12. doi: 10.1039/c2an35849b. Epub 2012 Sep 13.

Abstract

For future development of simple miniaturized sensors based on pulsed atmospheric pressure ionization as known from ion mobility spectrometry, we investigated the reaction kinetics of ion-ion-recombination to establish selective ion suppression as an easy to apply separation technique for otherwise non-selective ion detectors. Therefore, the recombination rates of different positive ion species, such as protonated water clusters H(+)(H(2)O)(n) (positive reactant ions), acetone, ammonia and dimethyl-methylphosphonate ions, all recombining with negative oxygen clusters O(2)(-)(H(2)O)(n) (negative reactant ions) in a field-free reaction region, are measured and compared. For all experiments, we use a drift tube ion mobility spectrometer equipped with a non-radioactive electron gun for pulsed atmospheric pressure ionization of the analytes. Both, ionization and recombination times are controlled by the duty cycle and repetition rate of the electron emission from the electron gun. Thus, it is possible to investigate the ion loss caused by ion-ion-recombination depending on the recombination time defined as the time delay between the end of the electron emission and the ion injection into the drift tube. Furthermore, the effect of the initial total ion density in the reaction region on the ion-ion-recombination rate is investigated by varying the density of the emitted electrons.

摘要

为了未来基于脉冲大气压电离的简单微型传感器的发展,我们研究了离子-离子复合反应动力学,以建立选择性离子抑制作为一种易于应用的分离技术,用于原本非选择性的离子探测器。因此,不同正离子物种(如质子化水簇 H(+)(H(2)O)(n)(正反应物离子)、丙酮、氨和二甲甲基膦酸酯离子)与在无场反应区中与负氧簇 O(2)(-)(H(2)O)(n)(负反应物离子)的复合速率被测量并进行比较。在所有实验中,我们使用配备非放射性电子枪的漂移管离子迁移谱仪对分析物进行脉冲大气压电离。离子化和复合时间都由电子枪的电子发射占空比和重复率控制。因此,可以根据定义为电子发射结束与离子注入漂移管之间的时间延迟的复合时间来研究由离子-离子复合引起的离子损失。此外,通过改变发射电子的密度,研究了反应区中初始总离子密度对离子-离子复合速率的影响。

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