Cisneros-Contreras, I.R.; López-Ganem, G.; Sánchez-Dena, O.; Wong, Y.H.; Pérez-MartÃnez, A.L.; RodrÃguez-Gómez, A.
Al-Doped ZnO Thin Films with 80% Average Transmittance and 32 Ohms per Square Sheet Resistance: A Genuine Alternative to Commercial High-Performance Indium Tin Oxide. Physics 2023, 5, 45-58.
https://doi.org/10.3390/physics5010004
AMA Style
Cisneros-Contreras IR, López-Ganem G, Sánchez-Dena O, Wong YH, Pérez-MartÃnez AL, RodrÃguez-Gómez A.
Al-Doped ZnO Thin Films with 80% Average Transmittance and 32 Ohms per Square Sheet Resistance: A Genuine Alternative to Commercial High-Performance Indium Tin Oxide. Physics. 2023; 5(1):45-58.
https://doi.org/10.3390/physics5010004
Chicago/Turabian Style
Cisneros-Contreras, Ivan Ricardo, Geraldine López-Ganem, Oswaldo Sánchez-Dena, Yew Hoong Wong, Ana Laura Pérez-MartÃnez, and Arturo RodrÃguez-Gómez.
2023. "Al-Doped ZnO Thin Films with 80% Average Transmittance and 32 Ohms per Square Sheet Resistance: A Genuine Alternative to Commercial High-Performance Indium Tin Oxide" Physics 5, no. 1: 45-58.
https://doi.org/10.3390/physics5010004
APA Style
Cisneros-Contreras, I. R., López-Ganem, G., Sánchez-Dena, O., Wong, Y. H., Pérez-MartÃnez, A. L., & RodrÃguez-Gómez, A.
(2023). Al-Doped ZnO Thin Films with 80% Average Transmittance and 32 Ohms per Square Sheet Resistance: A Genuine Alternative to Commercial High-Performance Indium Tin Oxide. Physics, 5(1), 45-58.
https://doi.org/10.3390/physics5010004