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Mass Spectrometry Analyses of Ions Generated by Atmospheric-Pressure Plasma Jets in Ambient Air

机译:环境空气中大气压等离子体喷射产生的离子的质谱分析

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For biological and medical applications of low-temperature atmospheric-pressure plasmas (APPs), gas- and liquid-phase chemical reactions caused by the plasmas determine the effectiveness of the APP-based treatments of biological systems. In this study, ions generated by helium-based low-frequency APP jets were identified by mass spectrometry. It is shown that, among all positive ions generated by plasma jets in ambient air, hydronium ions (H3O+) are the dominant ions that form water clusters. The stability of a hydronium ion with water molecules suggests that all positive ions generated by plasma jets would transfer their charges to hydronium ions if water molecules were abundant, such as in humid air or water. Similarly, it is shown that, among all negative ions generated by the plasma jets in ambient air, relatively few, such as OH", HO2", NO2~, NO3-, HCO3", and HCO4", form water clusters stably. The densities of positive and negative ions generated in ambient air by the APP jet system, as well as the concentrations of H2O2 and NO2~ generated in pure water exposed to the same plasma, have been also measured.
机译:对于低温常压等离子体(APP)的生物和医学应用,等离子体引起的气相和液相化学反应决定了基于APP的生物系统治疗的有效性。在这项研究中,通过质谱鉴定了氦基低频APP射流产生的离子。结果表明,在环境空气中等离子体射流产生的所有正离子中,氢离子(H3O+)是形成水团簇的主要离子。氢离子与水分子的稳定性表明,如果水分子丰富,例如在潮湿的空气或水中,等离子体射流产生的所有正离子都会将电荷转移到氢离子上。同样,研究表明,在环境空气中等离子体射流产生的所有负离子中,相对较少的负离子,如OH、HO2、NO2~、NO3-、HCO3和HCO4,稳定地形成水团簇。还测量了APP-jet系统在环境空气中产生的正离子和负离子的密度,以及暴露在同一等离子体中的纯水中产生的H2O2和NO2~的浓度。

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