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Thermally stable La(2)LiSbO(6):Mn(4+),Mg(2+) far-red emitting phosphors with over 90% internal quantum efficiency for plant growth LEDs

In this paper, we reported on the high-efficiency and thermally-stable La(2)LiSbO(6):Mn(4+),Mg(2+) (LLS:Mn(4+),Mg(2+)) far-red emitting phosphors. Under 338 nm excitation, the composition-optimized LLS:0.3%Mn(4+),1.6%Mg(2+) phosphors which were made up of [SbO(6)], [LiO(6)], and [LaO(8)] polyhedrons...

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Detalles Bibliográficos
Autores principales: Sun, Liangling, Devakumar, Balaji, Liang, Jia, Li, Bin, Wang, Shaoying, Sun, Qi, Guo, Heng, Huang, Xiaoyong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9085872/
https://www.ncbi.nlm.nih.gov/pubmed/35547514
http://dx.doi.org/10.1039/c8ra06435k
Descripción
Sumario:In this paper, we reported on the high-efficiency and thermally-stable La(2)LiSbO(6):Mn(4+),Mg(2+) (LLS:Mn(4+),Mg(2+)) far-red emitting phosphors. Under 338 nm excitation, the composition-optimized LLS:0.3%Mn(4+),1.6%Mg(2+) phosphors which were made up of [SbO(6)], [LiO(6)], and [LaO(8)] polyhedrons, showed intense far-red emissions peaking at 712 nm ((2)E(g) → (4)A(2g) transition) with internal quantum efficiency as high as 92%. The LLS:0.3%Mn(4+),1.6%Mg(2+) phosphors also exhibited high thermal stability, and the emission intensity at 423 K only reduced by 42% compared with its initial value at 303 K. The far-red light-emitting device has also been made by using the LLS:0.3%Mn(4+),1.6%Mg(2+) phosphors and a 365 nm emitting InGaN chip, which can emit far-red light that is visible to the naked eye. Importantly, the emission spectrum of the LLS:0.3%Mn(4+),1.6%Mg(2+) phosphors can match well with the absorption spectrum of phytochrome P(FR), indicating the potential of these phosphors to be used in plant growth light-emitting diodes.