Maltsev, S.; Dymshits, O.; Alekseeva, I.; Volokitina, A.; Tenevich, M.; Bachina, A.; Bogdanov, K.; Zapalova, S.; Shakhgildyan, G.; Zhilin, A.
Glass-Ceramics of the Lithium Aluminosilicate System Nucleated by TiO2: The Role of Redox Conditions of Glass Melting in Phase Transformations and Properties. Materials 2025, 18, 785.
https://doi.org/10.3390/ma18040785
AMA Style
Maltsev S, Dymshits O, Alekseeva I, Volokitina A, Tenevich M, Bachina A, Bogdanov K, Zapalova S, Shakhgildyan G, Zhilin A.
Glass-Ceramics of the Lithium Aluminosilicate System Nucleated by TiO2: The Role of Redox Conditions of Glass Melting in Phase Transformations and Properties. Materials. 2025; 18(4):785.
https://doi.org/10.3390/ma18040785
Chicago/Turabian Style
Maltsev, Stanislav, Olga Dymshits, Irina Alekseeva, Anna Volokitina, Maksim Tenevich, Anastasia Bachina, Kirill Bogdanov, Svetlana Zapalova, Georgiy Shakhgildyan, and Aleksandr Zhilin.
2025. "Glass-Ceramics of the Lithium Aluminosilicate System Nucleated by TiO2: The Role of Redox Conditions of Glass Melting in Phase Transformations and Properties" Materials 18, no. 4: 785.
https://doi.org/10.3390/ma18040785
APA Style
Maltsev, S., Dymshits, O., Alekseeva, I., Volokitina, A., Tenevich, M., Bachina, A., Bogdanov, K., Zapalova, S., Shakhgildyan, G., & Zhilin, A.
(2025). Glass-Ceramics of the Lithium Aluminosilicate System Nucleated by TiO2: The Role of Redox Conditions of Glass Melting in Phase Transformations and Properties. Materials, 18(4), 785.
https://doi.org/10.3390/ma18040785