Aviv Amirav, Benny Neumark, Oneg Elkabets, Alex Yakovchuk
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引用次数: 0
摘要
冷电子电离(EI)气相色谱-质谱(GC-MS)是一种将气相色谱和质谱(MS)与超声分子束(SMB)结合,并在无接触飞穿离子源(因此称为冷电子电离)中对SMB中的振动冷样品化合物进行电子电离的方法。Cold EI改善了GC-MS的所有核心性能方面,包括:可用于分析的化合物范围的显著扩展,增强的分子离子,高度改进的样品鉴定,更快的分析(快得多),对所有分析物的均匀响应,更高的选择性和更高的信噪比和更低的检测限,特别是对于难以分析的化合物。GC-MS with Cold EI执行全范围的标准EI应用程序的分析,并且大多数具有各种指标的重大改进。此外,它大大扩展了适用于GC-MS分析的化合物和应用范围。因此,它是一种非常优越的替代离子源。在这篇综述文章中,我们描述了Cold EI及其主要特点,讨论了它的优点,并展示了它的几个独特的应用,包括大麻素分析,合成有机化合物分析,医学诊断的全血分析,改进燃料和油的异构体分布分析,以及爆炸物分析。
Cold EI-The Way to Improve GC-MS and Increase Its Range of Applications.
Gas chromatography-mass spectrometry (GC-MS) with Cold electron ionization (EI) is based on interfacing the GC and MS with a supersonic molecular beam (SMB) along with electron ionization of vibrationally cold sample compounds in the SMB in a contact-free fly-through ion source (hence the name Cold EI). Cold EI improves all the central performance aspects of GC-MS, including: a significantly extended range of compounds that are amenable for analysis, enhanced molecular ions, highly improved sample identification, faster analysis (much faster), uniform response to all analytes, greater selectivity and higher signal to noise ratios and lower limits of detection, particularly for compounds that are difficult to analyze. GC-MS with Cold EI executes the analysis of the full range of standard EI applications and most with major improvements of various metrics. Furthermore, it significantly extends the range of compounds and applications amenable for GC-MS analysis. Accordingly, it is a highly superior replacement ion source. In this review article, we describe Cold EI and its main features, discuss its benefits, and demonstrate several of its unique applications including cannabinoids analysis, synthetic organic compounds analysis, whole blood analysis for medical diagnostics, isomer distribution analysis for improved fuels and oils, and explosives analysis.
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.