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反应化学系统离子轨迹的蒙特卡罗模拟:离子迁移谱中小水团簇的迁移率。

Monte Carlo simulation of ion trajectories of reacting chemical systems: mobility of small water clusters in ion mobility spectrometry.

机构信息

Institute for Pure and Applied Mass Spectrometry, Physical and Theoretical Chemistry, University of Wuppertal, Wuppertal, Germany.

出版信息

J Am Soc Mass Spectrom. 2013 Apr;24(4):632-41. doi: 10.1007/s13361-012-0553-1. Epub 2013 Mar 2.

Abstract

For the comprehensive simulation of ion trajectories including reactive collisions at elevated pressure conditions, a chemical reaction simulation (RS) extension to the popular SIMION software package was developed, which is based on the Monte Carlo statistical approach. The RS extension is of particular interest to SIMION users who wish to simulate ion trajectories in collision dominated environments such as atmospheric pressure ion sources, ion guides (e.g., funnels, transfer multi poles), chemical reaction chambers (e.g., proton transfer tubes), and/or ion mobility analyzers. It is well known that ion molecule reaction rate constants frequently reach or exceed the collision limit obtained from kinetic gas theory. Thus with a typical dwell time of ions within the above mentioned devices in the ms range, chemical transformation reactions are likely to occur. In other words, individual ions change critical parameters such as mass, mobility, and chemical reactivity en passage to the analyzer, which naturally strongly affects their trajectories. The RS method simulates elementary reaction events of individual ions reflecting the behavior of a large ensemble by a representative set of simulated reacting particles. The simulation of the proton bound water cluster reactant ion peak (RIP) in ion mobility spectrometry (IMS) was chosen as a benchmark problem. For this purpose, the RIP was experimentally determined as a function of the background water concentration present in the IMS drift tube. It is shown that simulation and experimental data are in very good agreement, demonstrating the validity of the method.

摘要

为了在高压条件下全面模拟包括反应性碰撞在内的离子轨迹,在广受欢迎的 SIMION 软件包中开发了一种基于蒙特卡罗统计方法的化学反应模拟 (RS) 扩展。对于希望模拟大气压离子源、离子阱(例如,漏斗、传输多极)、化学反应室(例如,质子转移管)和/或离子迁移率分析仪等碰撞主导环境中的离子轨迹的 SIMION 用户来说,RS 扩展特别感兴趣。众所周知,离子分子反应速率常数经常达到或超过从动力学气体理论获得的碰撞极限。因此,在上述设备中,离子的典型停留时间在毫秒范围内,很可能会发生化学转化反应。换句话说,单个离子在通过分析仪的过程中会改变质量、迁移率和化学反应性等关键参数,这自然会强烈影响它们的轨迹。RS 方法模拟单个离子的基本反应事件,通过一组代表模拟反应粒子来反映大量集合体的行为。选择离子迁移谱 (IMS) 中质子束缚水簇反应物离子峰 (RIP) 的模拟作为基准问题。为此,实验确定了 RIP 作为 IMS 漂移管中存在的背景水浓度的函数。结果表明,模拟和实验数据非常吻合,证明了该方法的有效性。

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