Mastrikov, Y.A.; Gryaznov, D.; Sokolov, M.N.; Zvejnieks, G.; Popov, A.I.; Eglitis, R.I.; Kotomin, E.A.; Ananyev, M.V.
Oxygen Vacancy Formation and Migration within the Antiphase Boundaries in Lanthanum Scandate-Based Oxides: Computational Study. Materials 2022, 15, 2695.
https://doi.org/10.3390/ma15072695
AMA Style
Mastrikov YA, Gryaznov D, Sokolov MN, Zvejnieks G, Popov AI, Eglitis RI, Kotomin EA, Ananyev MV.
Oxygen Vacancy Formation and Migration within the Antiphase Boundaries in Lanthanum Scandate-Based Oxides: Computational Study. Materials. 2022; 15(7):2695.
https://doi.org/10.3390/ma15072695
Chicago/Turabian Style
Mastrikov, Yuri A., Denis Gryaznov, Maksim N. Sokolov, Guntars Zvejnieks, Anatoli I. Popov, Roberts I. Eglitis, Eugene A. Kotomin, and Maxim V. Ananyev.
2022. "Oxygen Vacancy Formation and Migration within the Antiphase Boundaries in Lanthanum Scandate-Based Oxides: Computational Study" Materials 15, no. 7: 2695.
https://doi.org/10.3390/ma15072695
APA Style
Mastrikov, Y. A., Gryaznov, D., Sokolov, M. N., Zvejnieks, G., Popov, A. I., Eglitis, R. I., Kotomin, E. A., & Ananyev, M. V.
(2022). Oxygen Vacancy Formation and Migration within the Antiphase Boundaries in Lanthanum Scandate-Based Oxides: Computational Study. Materials, 15(7), 2695.
https://doi.org/10.3390/ma15072695