Anandkumar, M.; Kesavan, K.P.; Sudarsan, S.; Zhivulin, D.E.; Shaburova, N.A.; Ostovari Moghaddam, A.; Litvinyuk, K.S.; Trofimov, E.A.
Phase Evolution of High-Entropy Stannate Pyrochlore Oxide Synthesized via Glycine-Assisted Sol–Gel Synthesis as a Thermal Barrier Coating Material. Nanomaterials 2025, 15, 939.
https://doi.org/10.3390/nano15120939
AMA Style
Anandkumar M, Kesavan KP, Sudarsan S, Zhivulin DE, Shaburova NA, Ostovari Moghaddam A, Litvinyuk KS, Trofimov EA.
Phase Evolution of High-Entropy Stannate Pyrochlore Oxide Synthesized via Glycine-Assisted Sol–Gel Synthesis as a Thermal Barrier Coating Material. Nanomaterials. 2025; 15(12):939.
https://doi.org/10.3390/nano15120939
Chicago/Turabian Style
Anandkumar, Mariappan, Kannan Pidugu Kesavan, Shanmugavel Sudarsan, Dmitry Evgenievich Zhivulin, Natalia Aleksandrovna Shaburova, Ahmad Ostovari Moghaddam, Ksenia Sergeevna Litvinyuk, and Evgeny Alekseevich Trofimov.
2025. "Phase Evolution of High-Entropy Stannate Pyrochlore Oxide Synthesized via Glycine-Assisted Sol–Gel Synthesis as a Thermal Barrier Coating Material" Nanomaterials 15, no. 12: 939.
https://doi.org/10.3390/nano15120939
APA Style
Anandkumar, M., Kesavan, K. P., Sudarsan, S., Zhivulin, D. E., Shaburova, N. A., Ostovari Moghaddam, A., Litvinyuk, K. S., & Trofimov, E. A.
(2025). Phase Evolution of High-Entropy Stannate Pyrochlore Oxide Synthesized via Glycine-Assisted Sol–Gel Synthesis as a Thermal Barrier Coating Material. Nanomaterials, 15(12), 939.
https://doi.org/10.3390/nano15120939