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Coupling Front-End Separations, Ion Mobility Spectrometry, and Mass Spectrometry For Enhanced Multidimensional Biological and Environmental Analyses

机译:耦合前端分离,离子迁移光谱和质谱,提高多维生物和环境分析

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摘要

Ion mobility spectrometry (IMS) is a widely used analytical technique for rapid molecular separations in the gas phase. Though IMS alone is useful, its coupling with mass spectrometry (MS) and front-end separations is extremely beneficial for increasing measurement sensitivity, peak capacity of complex mixtures, and the scope of molecular information available from biological and environmental sample analyses. In fact, multiple disease screening and environmental evaluations have illustrated that the IMS-based multidimensional separations extract information that cannot be acquired with each technique individually. This review highlights three-dimensional separations using IMS-MS in conjunction with a range of front-end techniques, such as gas chromatography, supercritical fluid chromatography, liquid chromatography, solid-phase extractions, capillary electrophoresis, field asymmetric ion mobility spectrometry, and microfluidic devices. The origination, current state, various applications, and future capabilities of these multidimensional approaches are described in detail to provide insight into their uses and benefits.
机译:离子迁移率光谱(IMS)是一种广泛使用的分析技术,用于在气相中快速分子分离。虽然仅IMS是有用的,但其与质谱(MS)和前端分离的耦合非常有利于增加复杂混合物的测量敏感性,峰值容量,以及从生物和环境样本分析可获得的分子信息的范围。事实上,已经表明,多种疾病筛查和环境评估说明了基于IMS的多维分离提取信息,该信息不能单独使用每个技术获取。本综述突出了使用IMS-MS的三维分离,与一系列前端技术相结合,例如气相色谱,超临界流体色谱,液相色谱,固相萃取,毛细管电泳,现场不对称离子迁移光谱法和微流体设备。详细介绍了这些多维方法的始发,当前状态,各种应用和未来能力,以提供对其用途和益处的洞察力。

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