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首页> 外文期刊>Journal of mass spectrometry: JMS >Comprehensive theoretical analysis and experimental exploration of ultrafast microchip-based high-field asymmetric ion mobility spectrometry (FAIMS) technique
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Comprehensive theoretical analysis and experimental exploration of ultrafast microchip-based high-field asymmetric ion mobility spectrometry (FAIMS) technique

机译:基于超快芯片的高场非对称离子迁移谱技术(FAIMS)的综合理论分析和实验探索

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摘要

High-field asymmetric ion mobility spectrometry (FAIMS) has become an efficient technique for separation and characterization of gas-phase ions at ambient pressure, which utilizes the mobility differences of ions at high and low fields. Micro FAIMS devices made by micro-electromechanical system technology have small gaps of the channels, high electric field and good installation precision, as thus they have received great attentions. However, the disadvantage of relatively low resolution limits their applications in some areas. In this study, theoretical analysis and experimental exploration were carried out to overcome the disadvantage. Multiple scans, characteristic decline curves of ion transmission and pattern recognitions were proposed to improve the performance of the microchip-based FAIMS. The results showed that although micro FAIMS instruments as a standalone chemical analyzer suffer from low resolution, by using one or more of the methods proposed, they can identify chemicals precisely and provide quantitative analysis with low detection limit in some applications. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:高场非对称离子迁移谱(FAIMS)已成为一种在环境压力下分离和表征气相离子的有效技术,它利用了离子在高场和低场的迁移率差异。由微机电系统技术制造的Micro FAIMS设备的通道间隙小,电场高,安装精度高,因此受到了广泛的关注。但是,较低分辨率的缺点限制了它们在某些领域的应用。在这项研究中,进行了理论分析和实验探索以克服该缺点。为了提高基于微芯片的FAIMS的性能,提出了多次扫描,离子传输特征下降曲线和模式识别的建议。结果表明,尽管微型FAIMS仪器作为独立的化学分析仪存在分辨率较低的问题,但通过使用一种或多种建议的方法,它们可以在某些应用中准确识别化学物质并提供检测限较低的定量分析。版权所有(C)2015 John Wiley&Sons,Ltd.

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