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: HW6.00047 : Synthesis of ZnO Tetrapods by Atmospheric Pressure Microwave Plasma Jet and Their Enhanced Photocatalytic Performance
Presenter:
Jong-Min Seo
(Kangwon National University, South Korea)
Authors:
Goo-Hwan Jeong
(Department Advanced Materials Science and Engineering, Kangwon National University, South Korea)
Seong-Gyu Heo
(Department Advanced Materials Science and Engineering, Kangwon National University, South Korea)
Jong-Min Seo
(Kangwon National University, South Korea)
In this study, we report the synthesis of ZnO using an atmospheric pressure microwave plasma (APMP) jet system and enhanced photocatalytic property. A commercial micro-sized Zn powder was continuously introduced in the plume of the APMP jet ignited with mixture gases of oxygen and nitrogen. The effect of plasma power and collection sites on ZnO nanostructure was investigated. After the plasma discharge for 10 min, the produced materials deposited inside the 60-cm-long quartz tube were collected with respect to the distance from the plume. According to the SEM analysis, all the synthesized nanoparticles were found to be ZnO tetrapods ranging from 100 to 500-nm-diameter depending on both operation conditions and collection sites. To evaluate the photocatalytic properties, 1 mg of ZnO powder was dispersed in methylene blue dissolved (10 ppm) deionized water and UV light was exposured in a dark room. The photocatalytic efficiency was confirmed through UV-vis spectroscopy. As a result of checking the photocatalytic properties, we found that the rate of decomposition of methylene blue solutions increases with the (100), (101) crystal plane ratio of ZnO.
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