Title :
Improvement of plasma uniformity using ZnO-coated dielectric barrier discharge in open air
Author :
Choi, Jai Hyuk ; Noh, Joo Hyon ; Han, Inho ; Lee, Yong Ki ; Han, Man Hyeop ; Lee, Sung Won ; Baik, Hong Koo ; Song, Kie Moon ; Lim, Yong Sik
Author_Institution :
Dept. of Metall. Eng., Yonsei Univ., Seoul
Abstract :
Summary form only given. The discharge behavior in atmospheric pressure dielectric barrier discharge (DBD) using ZnO-coated dielectric layer are examined. Using RF magnetron sputtering, ZnO thin film deposited on the alumina surface represents the higher surface conductivity of about 106 orders than bare alumina surface. And we made two types of DBD reactor, normal DBD using bare alumina and ZnO-coated DBD. The size of the area was 5 cmtimes2 cm for dielectric layer and 3 cmtimes1 cm for copper electrode. Negative DC pulse power was applied to each reactor. And the pulse was generated by thyratron switching element and applied frequency is 1 kHz. Experimental result shows that in case of ZnO-coated DBD, discharge uniformity is improved definitely. Increase of surface conductivity causes charge spreading over the dielectric surface widely and these charges play a role of seed electrons for the initiation of consecutive streamer. Therefore the radius of microdischarge in air is decreased but fine and numerous current pulses are generated. This situation enhances the uniformity and stability of atmospheric pressure discharge in open air
Keywords :
plasma instability; plasma sources; plasma transport processes; plasma-wall interactions; surface conductivity; surface discharges; zinc compounds; 1 cm; 1 kHz; 2 cm; 3 cm; 5 cm; RF magnetron sputtering; ZnO; ZnO thin film; alumina surface; atmospheric pressure discharge; charge spreading; copper electrode; current pulses; dielectric barrier discharge; discharge stability; microdischarge; negative DC pulse power; open air; plasma uniformity; seed electrons; streamer; surface conductivity; thyratron switching; Atmospheric-pressure plasmas; Conductivity; Copper; Dielectric thin films; Inductors; Pulse generation; Radio frequency; Sputtering; Surface discharges; Zinc oxide;
Conference_Titel :
Plasma Science, 2006. ICOPS 2006. IEEE Conference Record - Abstracts. The 33rd IEEE International Conference on
Conference_Location :
Traverse City, MI
Print_ISBN :
1-4244-0125-9
DOI :
10.1109/PLASMA.2006.1706933