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通过使用APLI自动测定离子接受度分布(DIA)进行系统离子源参数评估。

Systematic Ion Source Parameter Assessment by Automated Determination of the Distribution of Ion Acceptance (DIA) Using APLI.

作者信息

Wißdorf Walter, Lorenz Matthias, Brockmann Klaus, Benter Thorsten

机构信息

Department of Physical and Theoretical Chemistry, University of Wuppertal, Gauss Str. 20, 42119, Wuppertal, Germany.

Oak Ridge National Laboratory, Center for Nanophase Materials Sciences, 1 Bethel Valley Rd, Oak Ridge, TN, 37831-6493, USA.

出版信息

J Am Soc Mass Spectrom. 2019 Jul;30(7):1262-1275. doi: 10.1007/s13361-019-02190-x. Epub 2019 May 8.

Abstract

The determination of the spatially resolved ion signal with atmospheric pressure laser ionization (APLI), which was introduced as distribution of ion acceptance (DIA), serves as a valuable tool for the understanding of complex and highly dynamical conditions in modern atmospheric pressure (AP) ion sources. DIA provides information about fluid dynamics, ion transport, and ion transformation processes in such sources and is an ideal basis for the validation of numerical models of the dynamics in the ion source enclosure.We present a fully automated setup for DIA measurements, which enabled us to acquire a comprehensive dataset of over 700 individual DIA measurements in a commercial AP ion source (Bruker Multi Purpose Ion Source, MPIS). Ion source parameters as voltages, gas heater temperatures and gas flows, were varied, and the effect of those parameters on the DIA of a chemically inert analyte, pyrene, was systematically investigated. It is shown that the response of the DIA is nonlinear and that gas dynamics largely dominates the ion transport in the ion source. Particularly, the position of the heated nebulizer, which is used to introduce one of two gas flows and the analyte into the ion source chamber, had a profound effect on the DIA. This suggests that the gas dynamics in the source switches between different states. The now available comprehensive DIA dataset reveals such critical effects and will guide further numerical modeling efforts to understand the details of the dynamics of ions in the source chamber. Graphical Abstract.

摘要

利用大气压激光电离(APLI)测定空间分辨离子信号,该技术作为离子接受分布(DIA)被引入,是理解现代大气压(AP)离子源中复杂且高度动态条件的宝贵工具。DIA提供了有关此类离子源中流体动力学、离子传输和离子转化过程的信息,是验证离子源外壳内动力学数值模型的理想基础。我们展示了一种用于DIA测量的全自动装置,它使我们能够在商用AP离子源(布鲁克多功能离子源,MPIS)中获取超过700次单独DIA测量的综合数据集。改变了诸如电压、气体加热器温度和气体流量等离子源参数,并系统地研究了这些参数对化学惰性分析物芘的DIA的影响。结果表明,DIA的响应是非线性的,并且气体动力学在很大程度上主导了离子源中的离子传输。特别是,用于将两种气体流之一和分析物引入离子源腔室的加热雾化器的位置,对DIA有深远影响。这表明离子源中的气体动力学在不同状态之间切换。现有的综合DIA数据集揭示了此类关键影响,并将指导进一步的数值建模工作,以了解离子源腔室中离子动力学的细节。图形摘要。

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