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Super-Atmospheric Pressure Ion Sources: Application and Coupling to API Mass Spectrometer

机译:超大气压离子源:API质谱仪应用和耦合

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Pressurizing the ionization source to gas pressure greater than atmospheric pressure is a new tactic aimed at further improving the performance of atmospheric pressure ionization (API) sources. In principle, all API sources, such as ESI, APCI and AP-MALDI, can be operated at pressure higher than 1?atm if suitable vacuum interface is available. The gas pressure in the ion source can have different role for different ionization. For example, in the case of ESI, stable electrospray could be sustained for high surface tension liquid (e.g. , pure water) under super-atmospheric pressure, owing to the absence of electric discharge. Even for nanoESI, which is known to work well with aqueous solution, its stability and sensitivity were found to be enhanced, particularly in the negative mode when the ion source was pressurized. For the gas phase ionization like APCI, measurement of gaseous compound also showed an increase in ion intensity with the ion source pressure until an optimum pressure at around 4–5?atm. The enhancement was due to the increased collision frequency among reactant ion and analyte that promoted the ion/molecule reaction and a higher intake rate of gas to the mass spectrometer. Because the design of vacuum interface for API instrument is based on the upstream pressure of 1?atm, some coupling aspects need to be considered when connecting the high pressure ion source to the mass spectrometer. Several coupling strategies are discussed in this paper.
机译:将电离源加压到大于大气压的气体压力是一种新的策略,旨在进一步提高大气压电离(API)源的性能。原则上,如果合适的真空界面可用,则可以在高于1的压力下操作所有API源,例如ESI,APCI和AP-MALDI,如果合适的真空界面,则可以在高于1的压力下操作。离子源中的气体压力可以对不同的电离具有不同的作用。例如,由于没有放电,在ESI的情况下,由于没有放电,可以在高度大气压下持续稳定的电喷雾器以用于高度大气压下的高表面张力液(纯净水)。甚至对于纳米纳米,已知与水溶液很好,发现其稳定性和灵敏度被发现增强,特别是当离子源加压时的负模式。对于诸如APCI的气相电离,气态化合物的测量还显示离子源压力的离子强度增加,直到约4-5℃的最佳压力。增强是由于促进离子/分子反应的反应物离子和分析物之间的碰撞频率增加,以及对质谱仪的更高进气速率。因为API仪器的真空界面的设计基于1?ATM的上游压力,所以在将高压离子源连接到质谱仪时需要考虑一些耦合方面。本文讨论了几种耦合策略。

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