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用于制备质谱分析的旋转壁质量分析仪的操作原理

Principles of Operation of a Rotating Wall Mass Analyzer for Preparative Mass Spectrometry.

作者信息

Su Pei, Espenship Michael F, Laskin Julia

机构信息

Department of Chemistry, Purdue University, 560 Oval Drive, West Lafayette, Indiana 47907, United States.

出版信息

J Am Soc Mass Spectrom. 2020 Sep 2;31(9):1875-1884. doi: 10.1021/jasms.0c00140. Epub 2020 Aug 18.

DOI:10.1021/jasms.0c00140
PMID:32809825
Abstract

In this contribution, we describe the principles of operation of a rotating wall mass analyzer (RWMA), a mass-dispersive device for preparative mass spectrometry. Ions of different / are spatially separated by RWMA and deposited onto ring-shaped areas of distinct radii on a surface. We use a combination of an analytical equation for predicting the radius of the deposition ring and SIMION simulations to understand how to optimize the experimental conditions for the separation of multicomponent mixtures. The results of these simulations are compared with the experimental data. We introduce a universal mass calibration procedure, based on a series of polyacrylamide ions, which is subsequently used to predict the deposition radii of unknown analytes. The calibration is independent of the polarity, kinetic energy, and charge state of the ion as demonstrated by assigning / values of different analytes including multiply charged ubiquitin ions. We demonstrate that mass resolution of the RWMA is affected by the width and kinetic energy distribution of the ion beam. The best mass resolution obtained in this study is / = ∼20. Preparative mass spectrometry using RWMA provides the advantages of simplicity, compactness, and low fabrication cost, which are particularly promising for the development of miniaturized instrumentation. The results presented in this work can be readily adapted to preparative separation of a variety of charged species of interest to the broad scientific community.

摘要

在本论文中,我们描述了旋转壁质量分析仪(RWMA)的工作原理,它是一种用于制备质谱的质量分散装置。不同的离子被RWMA在空间上分离,并沉积在表面上不同半径的环形区域。我们结合用于预测沉积环半径的解析方程和SIMION模拟,来了解如何优化用于分离多组分混合物的实验条件。将这些模拟结果与实验数据进行比较。我们基于一系列聚丙烯酰胺离子引入了一种通用的质量校准程序,随后用于预测未知分析物的沉积半径。如通过指定包括多电荷泛素离子在内的不同分析物的/值所证明的,该校准与离子的极性、动能和电荷状态无关。我们证明了RWMA的质量分辨率受离子束宽度和动能分布的影响。本研究中获得的最佳质量分辨率为/=~20。使用RWMA的制备质谱具有简单、紧凑和制造成本低的优点,这对于小型化仪器的开发尤其有前景。本工作中呈现的结果可以很容易地应用于对广大科学界感兴趣的各种带电物种的制备分离。

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