Lee, Y.-P.; Lin, C.-C.; Hsiao, C.-C.; Chou, P.-A.; Cheng, Y.-Y.; Hsieh, C.-C.; Dai, C.-A.
Nanopiezoelectric Devices for Energy Generation Based on ZnO Nanorods/Flexible-Conjugated Copolymer Hybrids Using All Wet-Coating Processes. Micromachines 2020, 11, 14.
https://doi.org/10.3390/mi11010014
AMA Style
Lee Y-P, Lin C-C, Hsiao C-C, Chou P-A, Cheng Y-Y, Hsieh C-C, Dai C-A.
Nanopiezoelectric Devices for Energy Generation Based on ZnO Nanorods/Flexible-Conjugated Copolymer Hybrids Using All Wet-Coating Processes. Micromachines. 2020; 11(1):14.
https://doi.org/10.3390/mi11010014
Chicago/Turabian Style
Lee, Yu-Ping, Chieh-Chuan Lin, Chih-Chung Hsiao, Po-An Chou, Yao-Yi Cheng, Chih-Chen Hsieh, and Chi-An Dai.
2020. "Nanopiezoelectric Devices for Energy Generation Based on ZnO Nanorods/Flexible-Conjugated Copolymer Hybrids Using All Wet-Coating Processes" Micromachines 11, no. 1: 14.
https://doi.org/10.3390/mi11010014
APA Style
Lee, Y.-P., Lin, C.-C., Hsiao, C.-C., Chou, P.-A., Cheng, Y.-Y., Hsieh, C.-C., & Dai, C.-A.
(2020). Nanopiezoelectric Devices for Energy Generation Based on ZnO Nanorods/Flexible-Conjugated Copolymer Hybrids Using All Wet-Coating Processes. Micromachines, 11(1), 14.
https://doi.org/10.3390/mi11010014