Bartosiewicz, K.; Tomala, R.; Szymański, D.; Albini, B.; Zeler, J.; Yoshino, M.; Horiai, T.; Socha, P.; Kurosawa, S.; Kamada, K.;
et al. Micro-Inclusion Engineering via Sc Incompatibility for Luminescence and Photoconversion Control in Ce3+-Doped Tb3Al5−xScxO12 Garnet. Materials 2024, 17, 2762.
https://doi.org/10.3390/ma17112762
AMA Style
Bartosiewicz K, Tomala R, Szymański D, Albini B, Zeler J, Yoshino M, Horiai T, Socha P, Kurosawa S, Kamada K,
et al. Micro-Inclusion Engineering via Sc Incompatibility for Luminescence and Photoconversion Control in Ce3+-Doped Tb3Al5−xScxO12 Garnet. Materials. 2024; 17(11):2762.
https://doi.org/10.3390/ma17112762
Chicago/Turabian Style
Bartosiewicz, Karol, Robert Tomala, Damian Szymański, Benedetta Albini, Justyna Zeler, Masao Yoshino, Takahiko Horiai, Paweł Socha, Shunsuke Kurosawa, Kei Kamada,
and et al. 2024. "Micro-Inclusion Engineering via Sc Incompatibility for Luminescence and Photoconversion Control in Ce3+-Doped Tb3Al5−xScxO12 Garnet" Materials 17, no. 11: 2762.
https://doi.org/10.3390/ma17112762
APA Style
Bartosiewicz, K., Tomala, R., Szymański, D., Albini, B., Zeler, J., Yoshino, M., Horiai, T., Socha, P., Kurosawa, S., Kamada, K., Galinetto, P., Zych, E., & Yoshikawa, A.
(2024). Micro-Inclusion Engineering via Sc Incompatibility for Luminescence and Photoconversion Control in Ce3+-Doped Tb3Al5−xScxO12 Garnet. Materials, 17(11), 2762.
https://doi.org/10.3390/ma17112762