Kim, D.; Kim, T.H.; Hong, T.E.; Bae, J.-S.; Kim, C.H.; Kim, J.; Kim, S.-J.; Jeon, K.-W.; Park, J.-C.
Highly Luminous Ba2SiO4−δN2/3δ:Eu2+ Phosphor for NUV-LEDs: Origin of PL-Enhancement by N3−-Substitution. Materials 2020, 13, 1859.
https://doi.org/10.3390/ma13081859
AMA Style
Kim D, Kim TH, Hong TE, Bae J-S, Kim CH, Kim J, Kim S-J, Jeon K-W, Park J-C.
Highly Luminous Ba2SiO4−δN2/3δ:Eu2+ Phosphor for NUV-LEDs: Origin of PL-Enhancement by N3−-Substitution. Materials. 2020; 13(8):1859.
https://doi.org/10.3390/ma13081859
Chicago/Turabian Style
Kim, Donghyeon, Tae Hun Kim, Tae Eun Hong, Jong-Seong Bae, Chang Hae Kim, Jaegyeom Kim, Seung-Joo Kim, Ki-Wan Jeon, and Jung-Chul Park.
2020. "Highly Luminous Ba2SiO4−δN2/3δ:Eu2+ Phosphor for NUV-LEDs: Origin of PL-Enhancement by N3−-Substitution" Materials 13, no. 8: 1859.
https://doi.org/10.3390/ma13081859
APA Style
Kim, D., Kim, T. H., Hong, T. E., Bae, J.-S., Kim, C. H., Kim, J., Kim, S.-J., Jeon, K.-W., & Park, J.-C.
(2020). Highly Luminous Ba2SiO4−δN2/3δ:Eu2+ Phosphor for NUV-LEDs: Origin of PL-Enhancement by N3−-Substitution. Materials, 13(8), 1859.
https://doi.org/10.3390/ma13081859