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Combined electrospray ionization-atmospheric pressure chemical ionization source for use in high-throughput LC-MS applications

机译:结合电喷雾电离-常压化学电离源,用于高通量LC-MS应用

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摘要

Fast and accurate analytical methods are essential to keep pace with. sample libraries produced from combinational chemistry and high-throughput biological screening. Many laboratories now use a combination of ionization techniques for the characterization of these samples, including atmospheric pressure chemical ionization (APCI), electrospray ionization (ESI), and photoionization (PI). Data are shown here from the analysis of a compound collection plate containing a variety of sample structures. ESI will normally analyze around 80% of these samples, necessitating a source change to analyze a further 10%. In this work, we have developed a new combined ESI-APCI source (ESCi) for use in on-line HPLC applications. The combined source allows alternate on-line ESI and APCI scans with polarity switching within a single analysis. The ESCi source has been designed to be a simple replacement for the existing mass spectrometer interfaces. Each ionization method is optimized independently using separate tuning parameters. Instrument electronics can readily switch between the two ionization methods and polarities within normal interscan time periods. The new source has reduced the analysis time of sample plates by eliminating the need for a source hardware change, source optimization, and repeat analyses. [References: 16]
机译:快速准确的分析方法对于保持同步至关重要。通过组合化学和高通量生物筛选产生的样品库。现在,许多实验室使用电离技术的组合来表征这些样品,包括大气压化学电离(APCI),电喷雾电离(ESI)和光电离(PI)。此处显示的数据来自对包含各种样品结构的化合物收集板的分析。 ESI通常将分析其中大约80%的样本,因此有必要更改源以进一步分析10%。在这项工作中,我们开发了一种新的ESI-APCI组合源(ESCi),用于在线HPLC应用。组合后的信号源允许在一次分析中进行极性切换的交替在线ESI和APCI扫描。 ESCi源已被设计为现有质谱仪接口的简单替代品。每种电离方法均使用单独的调整参数进行独立优化。仪器电子设备可以在正常的扫描间隔内轻松地在两种电离方法和极性之间切换。通过消除对源硬件的更改,源优化和重复分析的需要,新的源减少了样品板的分析时间。 [参考:16]

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