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Slit shaped microwave induced atmospheric pressure plasma based on a parallel plate transmission line resonator SCIE SCOPUS

Title
Slit shaped microwave induced atmospheric pressure plasma based on a parallel plate transmission line resonator
Authors
Kang, SKSeo, YSLee, HWAman-ur-RehmanKim, GCLee, JK
Date Issued
2011-11-02
Publisher
IOP
Abstract
A new type of microwave-excited atmospheric pressure plasma source, based on the principle of parallel plate transmission line resonator, is developed for the treatment of large areas in biomedical applications such as skin treatment and wound healing. A stable plasma of 20 mm width is sustained by a small microwave power source operated at a frequency of 700 MHz and a gas flow rate of 0.9 slm. Plasma impedance and plasma density of this plasma source are estimated by fitting the calculated reflection coefficient to the measured one. The estimated plasma impedance shows a decreasing trend while estimated plasma density shows an increasing trend with the increase in the input power. Plasma uniformity is confirmed by temperature and optical emission distribution measurements. Plasma temperature is sustained at less than 40 degrees C and abundant amounts of reactive species, which are important agents for bacteria inactivation, are detected over the entire plasma region. Large area treatment ability of this newly developed device is verified through bacteria inactivation experiment using E. coli. Sterilization experiment shows a large bacterial killing mark of 25 mm for a plasma treatment time of 10 s.
Keywords
MICROPLASMA; DISCHARGES; NEEDLE; JET; AIR
URI
https://oasis.postech.ac.kr/handle/2014.oak/15063
DOI
10.1088/0022-3727/44/43/435201
ISSN
0022-3727
Article Type
Article
Citation
JOURNAL OF PHYSICS D-APPLIED PHYSICS, vol. 44, no. 43, 2011-11-02
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