Department of Chemistry and Biochemistry, Brigham Young University, Provo, UT 84602, USA.
J Am Soc Mass Spectrom. 2013 Mar;24(3):335-40. doi: 10.1007/s13361-012-0558-9. Epub 2013 Feb 8.
We present mass spectrometric data demonstrating the effect that hydrogen has on a helium-based dielectric-barrier discharge (DBD) atmospheric-pressure plasma jet used as an ambient desorption/ionization (ADI) source. The addition of 0.9 % hydrogen to the helium support gas in a 35-W plasma jet increased signals for a range of test analytes, with enhancement factors of up to 68, without proportional increases in background levels. The changes in signal levels result from a combination of changes in the desorption kinetics from the surface and increased ion production in the gas phase. The enhancement in ADI-MS performance despite the quenching of key plasma species reported in earlier studies suggests that ionization with a H2/He plasma jet is the result of an alternate mechanism involving the direct generation of ionized hydrogen.
我们呈现了质谱数据,证明了氢对氦基介质阻挡放电(DBD)大气压等离子体射流的影响,该射流可用作环境解吸/电离(ADI)源。在 35-W 等离子体射流中,将 0.9%的氢气添加到氦支撑气体中,增加了一系列测试分析物的信号,信号增强因子高达 68,而背景水平没有成比例增加。信号水平的变化是由于表面解吸动力学的变化和气相中离子生成的增加的综合作用。尽管早期研究报告称关键等离子体物种的猝灭,但 ADI-MS 性能的增强表明,H2/He 等离子体射流的电离是一种涉及直接生成氢离子的替代机制的结果。