Bulletin of the American Physical Society
75th Annual Gaseous Electronics Conference
Volume 67, Number 9
Monday–Friday, October 3–7, 2022;
Sendai International Center, Sendai, Japan
The session times in this program are intended for Japan Standard Time zone in Tokyo, Japan (GMT+9)
Session HW6: Poster Session II (4:30-6:30pm, JST)
4:30 PM,
Wednesday, October 5, 2022
Sendai International Center
Room: Sakura 1
Abstract: HW6.00073 : Investigation of atmospheric pressure nitrogen plasma assistance on mist CVD of zinc oxide thin films
Presenter:
Hiroya Kobayashi
(Meijo Univ)
Authors:
Hiroya Kobayashi
(Meijo Univ)
Keigo Takeda
(Meijo Univ)
Mineo Hiramatsu
(Meijo Univ)
An atmospheric pressure nitrogen plasma jet (N2 APPJ) was generated by supplying the high voltage (9 kV) to electrodes of plasma source at the nitrogen gas flow rate of 5 l/min. An aqueous solution (0.02 mol/l) made by dissolving zinc acetate dihydrate in pure water was made into a mist by an ultrasonicator and fed into the chamber as the ZnO source. The ZnO thin film was formed for 30 minutes on the silicon substrate placed on a stage heated to 400?. The distance between the substrate and the APPJ source was set to 10 mm.
ZnO formed by the mist CVD with the APPJ assistance has a structure composed of larger particles compared with that without the APPJ assistance. Moreover, the deposition rate increased up to 5 times. This result indicates the decomposition of raw materials was additionally promoted by the reactive species emitted from the N2 APPJ in addition to the pyrolysis.
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