Chen, Y.; Wang, C.; Song, G.; Deng, S.; Chen, J.
Modeling the Temporal Response of Gated ZnO Nanowire Field Emitter by Considering the Charging and Self-Heating Effect for Improving the Response Speed. Electronics 2024, 13, 796.
https://doi.org/10.3390/electronics13040796
AMA Style
Chen Y, Wang C, Song G, Deng S, Chen J.
Modeling the Temporal Response of Gated ZnO Nanowire Field Emitter by Considering the Charging and Self-Heating Effect for Improving the Response Speed. Electronics. 2024; 13(4):796.
https://doi.org/10.3390/electronics13040796
Chicago/Turabian Style
Chen, Yicong, Chengyun Wang, Guichen Song, Shaozhi Deng, and Jun Chen.
2024. "Modeling the Temporal Response of Gated ZnO Nanowire Field Emitter by Considering the Charging and Self-Heating Effect for Improving the Response Speed" Electronics 13, no. 4: 796.
https://doi.org/10.3390/electronics13040796
APA Style
Chen, Y., Wang, C., Song, G., Deng, S., & Chen, J.
(2024). Modeling the Temporal Response of Gated ZnO Nanowire Field Emitter by Considering the Charging and Self-Heating Effect for Improving the Response Speed. Electronics, 13(4), 796.
https://doi.org/10.3390/electronics13040796