教程:用于质谱的激光喷雾电离和相关的基于激光的电离方法

IF 6.9 2区 化学 Q1 SPECTROSCOPY
Sarah Trimpin
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引用次数: 1

摘要

本教程概述了激光喷雾电离(LSI)成功的参数,以及使用激光烧蚀基体分析物样品以产生高电荷离子的相关方法。在这些方法中,激光的目的是将基质分析物簇转移到气相。假设离子是由一个热过程产生的,其中发射的基质:分析物气相颗粒/团簇带电,带电颗粒中基质的损失导致分析物离子释放到气相中。负责电荷分离过程的热能相对较低,并且不一定由激光提供;一个加热的入口管连接大气压力和质谱仪的第一真空级是足够的。入口成为“离子源”,除其他外,压力、温度和基质(可以是固体、液体或组合)成为关键参数。注入基质:分析物进入加热的进气管,使用激光烧蚀,冲击波,或简单的敲击,都产生类似的质谱。提供的应用展示了新的机会,在质谱领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A tutorial: Laserspray ionization and related laser-based ionization methods for use in mass spectrometry

This Tutorial is to provide a summary of parameters useful for successful outcomes of laserspray ionization (LSI) and related methods that employ a laser to ablate a matrix:analyte sample to produce highly charged ions. In these methods the purpose of the laser is to transfer matrix-analyte clusters into the gas phase. Ions are hypothesized to be produced by a thermal process where emitted matrix:analyte gas-phase particles/clusters are charged and loss of matrix from the charged particles leads to release of the analyte ions into the gas phase. The thermal energy responsible for the charge-separation process is relatively low and not necessarily supplied by the laser; a heated inlet tube linking atmospheric pressure with the first vacuum stage of a mass spectrometer is sufficient. The inlet becomes the “ion source”, and inter alia, pressure, temperature, and the matrix, which can be a solid, liquid, or combinations, become critical parameters. Injecting matrix:analyte into a heated inlet tube using laser ablation, a shockwave, or simply tapping, all produce the similar mass spectra. Applications are provided that showcase new opportunities in the field of mass spectrometry.

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来源期刊
Mass Spectrometry Reviews
Mass Spectrometry Reviews 物理-光谱学
CiteScore
16.30
自引率
3.00%
发文量
56
期刊介绍: The aim of the journal Mass Spectrometry Reviews is to publish well-written reviews in selected topics in the various sub-fields of mass spectrometry as a means to summarize the research that has been performed in that area, to focus attention of other researchers, to critically review the published material, and to stimulate further research in that area. The scope of the published reviews include, but are not limited to topics, such as theoretical treatments, instrumental design, ionization methods, analyzers, detectors, application to the qualitative and quantitative analysis of various compounds or elements, basic ion chemistry and structure studies, ion energetic studies, and studies on biomolecules, polymers, etc.
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