首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Production of TEMPO by O atoms in atmospheric pressure non-thermal plasma-liquid interactions
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Production of TEMPO by O atoms in atmospheric pressure non-thermal plasma-liquid interactions

机译:通过O原子在大气压非热等离子体 - 液体相互作用中通过O原子生产Tempo

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摘要

Non-thermal atmospheric pressure plasmas enable plasma treatment of surfaces without requiring a low-pressure environment. These plasmas are currently of interest for, among other things, their biomedical applications, many of which are enabled by production of reactive oxygen and nitrogen species (RONS). Plasma-liquid interactions are especially important due to the high amounts of water in biological materials. However, the chemistries of these plasmas are very complex and are not well-understood. One method to quantify plasma-liquid interactions is to dissolve a reactant into the liquid which, when exposed to plasma-created RONS, forms a measurable product. In particular, the oxidation of the spin trap TEMP to TEMPO has been used to track trends in reactive oxygen species. However, the effect of individual species on TEMP has not previously been determined. This paper differentiates the oxidation of TEMP due to various oxygen species produced by a He plasma jet operating in a controllable environment. Oxidation of TEMP is mainly to O atoms, with small or negligible contributions from other species. Thus, the TEMPO yield will also be used to illuminate trends in O atom production.
机译:非热气大气压等离子体使得等离子体处理表面而不需要低压环境。这些等离子体目前是其生物医学应用的兴趣,其中许多是通过生产活性氧和氮物质(rons)的产生。由于生物材料中的高量水分,等离子体 - 液体相互作用尤为重要。然而,这些等离子体的化学物质非常复杂并且不太理解。定量血浆 - 液相相互作用的一种方法是将反应物溶于液体中,当暴露于等离子体产生的鲁尔斯时,形成可测量的产品。特别地,旋转陷阱温度至速度的氧化已经用于跟踪反应性氧物种的趋势。然而,以前没有确定单个物种对温度的影响。本文因由他等离子体喷射在可控环境中运行的各种氧物种而区分了温度的氧化。温度的氧化主要是O原子,其他物种的贡献小或可忽略不计。因此,速度产量也将用于照亮O原子生产的趋势。

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