Faculty of Advanced Technologies and Chemistry, Military University of Technology, ul. Gen. Sylwestra Kaliskiego 2, 00-908 Warsaw 46, Poland.
Molecules. 2021 Jul 28;26(15):4562. doi: 10.3390/molecules26154562.
This paper presents the results of the study on the course of the benzyl chloride (BzCl) ionization process in a drift tube ion mobility spectrometer (DT IMS) in which nitrogen was used as the carrier gas. BzCl ionization follows the dissociative electron capture mechanism. The chloride ions produced in this process take part in the formation of cluster ions. Using DT IMS allows for estimation of the value of the electron attachment rate for BzCl and the equilibrium constant for the cluster ion formation. The basic experimental method used in this work was to analyze drift time spectra obtained for the introduction of the sample to the spectrometer with the drift gas. The theoretical interpretation of the results is based on the mathematical description of the ion transport. This description takes into account the phenomenon of diffusion, as well as the processes of formation and dissociation of ionic clusters occurring during the movement of ions in the drift section.
本文介绍了在漂移管离子迁移谱仪(DT IMS)中研究氯化苄(BzCl)电离过程的结果,其中氮气被用作载气。BzCl 的电离遵循解离电子俘获机制。该过程中产生的氯离子参与形成簇离子。使用 DT IMS 可以估计 BzCl 的电子附加速率值和簇离子形成的平衡常数。本工作中使用的基本实验方法是分析在引入漂移气体时通过漂移管向光谱仪引入样品的漂移时间谱。结果的理论解释基于对离子输运的数学描述。这种描述考虑了扩散现象,以及在漂移段中离子运动过程中离子簇形成和解离的过程。