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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >The Effects of Added Hydrogen on Noble Gas Discharges Used as Ambient Desorption/Ionization Sources for Mass Spectrometry
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The Effects of Added Hydrogen on Noble Gas Discharges Used as Ambient Desorption/Ionization Sources for Mass Spectrometry

机译:氢气对惰性气体放电的影响,该惰性气体用作质谱法的环境解吸/电离源

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We demonstrate the effectiveness of using hydrogen-doped argon as the support gas for the dielectric barrier discharge (DBD) ambient desorption/ionization (ADI) source in mass spectrometry. Also, we explore the chemistry responsible for the signal enhancement observed when using both hydrogen-doped argon and hydrogen-doped helium. The hydrogen-doped argon was tested for five analytes representing different classes of molecules. Addition of hydrogen to the argon plasma gas enhanced signals for gas-phase analytes and for analytes coated onto glass slides in positive and negative ion mode. The enhancements ranged from factors of 4 to 5 for gas-phase analytes and factors of 2 to 40 for coated slides. There was no significant increase in the background. The limit of detection for caffeine was lowered by a factor of 79 using H-2/Ar and 2 using H-2/He. Results are shown that help explain the fundamental differences between the pure-gas discharges and those that are hydrogen-doped for both argon and helium. Experiments with different discharge geometries and grounding schemes indicate that observed signal enhancements are strongly dependent on discharge configuration.
机译:我们证明了在质谱中使用氢掺杂的氩气作为介电势垒放电(DBD)环境解吸/电离(ADI)源的载体气体的有效性。此外,我们探索了同时使用氢掺杂的氩气和氢掺杂的氦气时观察到的信号增强的化学反应。测试了氢掺杂氩气中代表不同类别分子的五种分析物。将氢添加到氩等离子体气体中可增强气相分析物和以正离子和负离子模式涂覆在载玻片上的分析物的信号。气相分析物的增强范围为4到5,涂层载玻片的增强范围为2到40。背景没有明显增加。使用H-2 / Ar将咖啡因的检出限降低了79倍,使用H-2 / He将咖啡因的检出限降低了2倍。结果表明,这有助于解释纯气体放电与氩气和氦气氢气掺杂的气体之间的根本区别。具有不同放电几何形状和接地方案的实验表明,观察到的信号增强在很大程度上取决于放电配置。

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