Park, C.-S.; Kim, D.Y.; Jung, E.Y.; Jang, H.J.; Bae, G.T.; Kim, J.Y.; Shin, B.J.; Lee, H.-K.; Tae, H.-S.
Ultrafast Room Temperature Synthesis of Porous Polythiophene via Atmospheric Pressure Plasma Polymerization Technique and Its Application to NO2 Gas Sensors. Polymers 2021, 13, 1783.
https://doi.org/10.3390/polym13111783
AMA Style
Park C-S, Kim DY, Jung EY, Jang HJ, Bae GT, Kim JY, Shin BJ, Lee H-K, Tae H-S.
Ultrafast Room Temperature Synthesis of Porous Polythiophene via Atmospheric Pressure Plasma Polymerization Technique and Its Application to NO2 Gas Sensors. Polymers. 2021; 13(11):1783.
https://doi.org/10.3390/polym13111783
Chicago/Turabian Style
Park, Choon-Sang, Do Yeob Kim, Eun Young Jung, Hyo Jun Jang, Gyu Tae Bae, Jae Young Kim, Bhum Jae Shin, Hyung-Kun Lee, and Heung-Sik Tae.
2021. "Ultrafast Room Temperature Synthesis of Porous Polythiophene via Atmospheric Pressure Plasma Polymerization Technique and Its Application to NO2 Gas Sensors" Polymers 13, no. 11: 1783.
https://doi.org/10.3390/polym13111783
APA Style
Park, C. -S., Kim, D. Y., Jung, E. Y., Jang, H. J., Bae, G. T., Kim, J. Y., Shin, B. J., Lee, H. -K., & Tae, H. -S.
(2021). Ultrafast Room Temperature Synthesis of Porous Polythiophene via Atmospheric Pressure Plasma Polymerization Technique and Its Application to NO2 Gas Sensors. Polymers, 13(11), 1783.
https://doi.org/10.3390/polym13111783