等离子体
分析化学(期刊)
物理
化学
有机化学
核物理学
作者
Abdollah Sarani,Cosmina Nicula,Xavier Gonzales,Magesh Thiyagarajan
标识
DOI:10.1109/tps.2014.2313527
摘要
In this paper, an atmospheric pressure low-temperature plasma pencil generated in helium and helium/ oxygen gas mixtures was characterized in detail for its discharge characteristics, plasma power, reactive plasma species produced, plasma density, and plasma temperatures using electrical and optical emission spectroscopy (OES) diagnostics, and its efficacy for biomedical application. A visible plasma plume length of approximately 27 mm was generated using a 60-kHz ac HV power supply. The OES results showed the most intensive plasma emission lines of OH transition A2Σ+(v = 0, 1)→X2Π(Δν = 0) at 308 nm and OH transition A2Σ+(v = 0, 1)→X2Π(Δν = 1) at 287 nm, O I transition 3p5P→3s5S0at 777.41 nm, O I transition 3p3P→3s3S0at 844.6 nm, and N2(C-B) second positive system with electronic transition C3Πu→B3Πgin the range 300-450 nm. The effects of controlled oxygen content on the plasma pencil and on various helium plasma emissions and electrical properties are studied. A spatial distribution of reactive plasma species produced by the plasma pencil is presented. The electron density of plasma jet was estimated to be in the order of 2.1 × 1014cm-3using Stark broadening line profile of the hydrogen alpha emission. The temperatures of afterglow plasma pencil were evaluated using OH rotational temperatures, and the results demonstrate temperatures of 316 and 362 K for pure He and He/O2gas mixtures (0.1% O2), respectively. Preliminary results on inactivation of Streptococcus pneumoniae on a solid surface and in liquid suspension were carried out using the plasma pencil for biomedical applications.
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