首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Electron Ionization Mass Spectrometry for Both Liquid and Gas Chromatography in One System without the Need for Hardware Adjustments
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Electron Ionization Mass Spectrometry for Both Liquid and Gas Chromatography in One System without the Need for Hardware Adjustments

机译:电子电离质谱法在一个系统中的液体和气相色谱法,而无需硬件调整

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摘要

A new instrument that bridges the gap between gas chromatography (GC) and liquid chromatography (LC) mass spectrometry (MS) was developed. In this instrument GC-MS and electron ionization LC-MS were combined in one MS system with method based mode changing. The LC pneumatic spray formation interface to MS was mounted on top of an otherwise unused GC detector slot and was connected with a flow restriction capillary to the MS through the GC oven and into the MS transfer line, parallel to the GC capillary column. The LC output mobile phase flow is directed into a spray formation and vaporization chamber. The pneumatic spray results in fine spray droplets that are thermally vaporized at a pressure equal to or greater than ambient. A portion of the vaporized mixture is directed into the heated flow restriction capillary that connects the spray formation and vaporization chamber into the electron ionization (EI) ion source, while most of the vaporized spray is released to the atmosphere. The combined GC-MS and LC-MS system can work either with standard EI or with cold EI via interfacing the flow restriction capillary into a supersonic nozzle forming a supersonic molecular beam of a vibrationally cold sample compound. We found that EI-LC-MS with cold EI has many benefits when compared with standard EI. The EI-LC-MS interface can also serve for flow injection analysis. The performance of the combined system is demonstrated in the analysis of a few sample mixtures by both GC-MS and LC-MS analysis, sequentially without hardware adjustments.
机译:开发了一种新仪器,将气相色谱(GC)和液相色谱(LC)质谱(MS)连接起来。在该仪器中,GC-MS和电子电离LC-MS结合在一个MS系统中,并基于方法进行模式转换。连接至MS的LC气动喷雾形成接口安装在一个未使用的GC检测器槽的顶部,并通过GC烘箱与流动限制毛细管连接至MS,并进入MS传输线,平行于GC毛细管柱。LC输出流动相流被导入喷雾形成和蒸发室。气动喷雾会产生细小的喷雾液滴,这些液滴在等于或大于环境压力的压力下热蒸发。一部分蒸发的混合物被导入加热的流量限制毛细管,该毛细管将喷雾形成和蒸发室连接到电子电离(EI)离子源,同时大部分蒸发的喷雾被释放到大气中。GC-MS和LC-MS组合系统可以与标准EI或冷EI一起工作,通过将限流毛细管连接到超声喷嘴,形成振动冷样品化合物的超声分子束。我们发现,与标准EI相比,冷EI的EI-LC-MS具有许多优点。EI-LC-MS接口也可用于流动注射分析。通过GC-MS和LC-MS分析对少数样品混合物进行分析,证明了组合系统的性能,无需硬件调整。

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