Celbová, L.; Ashcheulov, P.; Klimša, L.; Kopeček, J.; Aubrechtová Dragounová, K.; Luštinec, J.; Macák, J.; Škoda, R.; Kratochvílová, I.
Diamond Coating Reduces Nuclear Fuel Rod Corrosion at Accidental Temperatures: The Role of Surface Electrochemistry and Semiconductivity. Materials 2021, 14, 6315.
https://doi.org/10.3390/ma14216315
AMA Style
Celbová L, Ashcheulov P, Klimša L, Kopeček J, Aubrechtová Dragounová K, Luštinec J, Macák J, Škoda R, Kratochvílová I.
Diamond Coating Reduces Nuclear Fuel Rod Corrosion at Accidental Temperatures: The Role of Surface Electrochemistry and Semiconductivity. Materials. 2021; 14(21):6315.
https://doi.org/10.3390/ma14216315
Chicago/Turabian Style
Celbová, Lucie, Petr Ashcheulov, Ladislav Klimša, Jaromír Kopeček, Kateřina Aubrechtová Dragounová, Jakub Luštinec, Jan Macák, Radek Škoda, and Irena Kratochvílová.
2021. "Diamond Coating Reduces Nuclear Fuel Rod Corrosion at Accidental Temperatures: The Role of Surface Electrochemistry and Semiconductivity" Materials 14, no. 21: 6315.
https://doi.org/10.3390/ma14216315
APA Style
Celbová, L., Ashcheulov, P., Klimša, L., Kopeček, J., Aubrechtová Dragounová, K., Luštinec, J., Macák, J., Škoda, R., & Kratochvílová, I.
(2021). Diamond Coating Reduces Nuclear Fuel Rod Corrosion at Accidental Temperatures: The Role of Surface Electrochemistry and Semiconductivity. Materials, 14(21), 6315.
https://doi.org/10.3390/ma14216315