vix.ing · top · new · best · stats · spec

A dc non-thermal atmospheric-pressure plasma microjet

2012/05/18 by Weidong Zhu, WeiDong Zhu, José L. López +1
Engineering · Medicine · #Electrohydrodynamics and Fluid Dynamics #Plasma Applications and Diagnostics #Plasma Diagnostics and Applications

paper · doi:10.1088/0963-0252/21/3/034018

openalex publication_date 2012/05/18 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/30

Abstract

A direct current (dc), non-thermal, atmospheric-pressure plasma microjet is generated with helium/oxygen gas mixture as working gas. The electrical property is characterized as a function of the oxygen concentration and show distinctive regions of operation. Side-on images of the jet were taken to analyze the mode of operation as well as the jet length. A self-pulsed mode is observed before the transition of the discharge to normal glow mode. Optical emission spectroscopy is employed from both end-on and side-on along the jet to analyze the reactive species generated in the plasma. Line emissions from atomic oxygen (at 777.4 nm) and helium (at 706.5 nm) were studied with respect to the oxygen volume percentage in the working gas, flow rate and discharge current. Optical emission intensities of Cu and OH are found to depend heavily on the oxygen concentration in the working gas. Ozone concentration measured in a semi-confined zone in front of the plasma jet is found to be from tens to ∼120 ppm. The results presented here demonstrate potential pathways for the adjustment and tuning of various plasma parameters such as reactive species selectivity and quantities or even ultraviolet emission intensities manipulation in an atmospheric-pressure non-thermal plasma source. The possibilities of fine tuning these plasma species allows for enhanced applications in health and medical related areas.

Related