Umek, P.; Dürrschnabel, M.; Molina-Luna, L.; Škapin, S.; Korošec, R.C.; Bittencourt, C.
The Role of Cerium Valence in the Conversion Temperature of H2Ti3O7 Nanoribbons to TiO2-B and Anatase Nanoribbons, and Further to Rutile. Molecules 2023, 28, 5838.
https://doi.org/10.3390/molecules28155838
AMA Style
Umek P, Dürrschnabel M, Molina-Luna L, Škapin S, Korošec RC, Bittencourt C.
The Role of Cerium Valence in the Conversion Temperature of H2Ti3O7 Nanoribbons to TiO2-B and Anatase Nanoribbons, and Further to Rutile. Molecules. 2023; 28(15):5838.
https://doi.org/10.3390/molecules28155838
Chicago/Turabian Style
Umek, Polona, Michael Dürrschnabel, Leopoldo Molina-Luna, Srečo Škapin, Romana Cerc Korošec, and Carla Bittencourt.
2023. "The Role of Cerium Valence in the Conversion Temperature of H2Ti3O7 Nanoribbons to TiO2-B and Anatase Nanoribbons, and Further to Rutile" Molecules 28, no. 15: 5838.
https://doi.org/10.3390/molecules28155838
APA Style
Umek, P., Dürrschnabel, M., Molina-Luna, L., Škapin, S., Korošec, R. C., & Bittencourt, C.
(2023). The Role of Cerium Valence in the Conversion Temperature of H2Ti3O7 Nanoribbons to TiO2-B and Anatase Nanoribbons, and Further to Rutile. Molecules, 28(15), 5838.
https://doi.org/10.3390/molecules28155838