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Ion-molecule reactions in quadrupole ion trap mass spectrometry: implications for lightweight gas analysis

机译:四极杆离子阱质谱中的离子分子反应:对轻质气体分析的启示

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摘要

The novel application of a quadrupole ion trap mass spectrometer (QITMS) to permanent gas analysis was recently presented by our laboratory. The quantitative performance of the QITMS equaled or surpassed that of other mass analyzers evaluated; however, concern was raised as to the impact of ion-molecule reactions observed within the ion trap. Hydrogen, helium, oxygen, and argon, four permanent gases currently monitored during Space Shuttle launch preparations by the National Aeronautics and Space Administration, were examined in their reactions with common atmospheric and mass spectrometer background components. Rapid charge-exchange and protonation reactions occurred. Greater than 99.8% of hydrogen and 98% of helium ions trapped are lost during a scan cycle predominately through reactions with background nitrogen. The neutralization rate of argon ions varied with water concentration, while increased concentrations of all three gases inflated the oxygen ion signal intensity through charge-exchange. Although such dramatic effects challenge the analytical sensitivity and robustness of QITMS for permanent gas analysis, through proper understanding and control of relevant experimental conditions the QITMS can still function in monitoring applications. (c) 2004 Elsevier B.V. All rights reserved.
机译:我们的实验室最近介绍了四极离子阱质谱仪(QITMS)在永久性气体分析中的新应用。 QITMS的定量性能等于或超过其他评估的质量分析仪;然而,人们对在离子阱中观察到的离子分子反应的影响提出了关注。氢,氦,氧和氩是美国国家航空航天局目前在航天飞机发射准备过程中监测的四种永久性气体,与常见的大气和质谱仪背景成分进行了反应。发生快速电荷交换和质子化反应。在扫描周期中,主要是通过与背景氮的反应损失了超过99.8%的氢和98%的捕获的氦离子。氩离子的中和率随水的浓度而变化,而所有三种气体的浓度升高则通过电荷交换使氧离子信号强度增大。尽管这种巨大的影响挑战了QITMS对永久性气体分析的分析灵敏度和耐用性,但通过对相关实验条件的正确理解和控制,QITMS仍可以在监测应用中发挥作用。 (c)2004 Elsevier B.V.保留所有权利。

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