首页|期刊导航|Journal of Advanced Ceramics|Realizing intense deep-far-red broadband emission derived from mica ceramics through isomorphic cation substitution/doping for plant cultivation lighting and latent fingerprint identification
Realizing intense deep-far-red broadband emission derived from mica ceramics through isomorphic cation substitution/doping for plant cultivation lighting and latent fingerprint identification
Mengrou Jiang Na Qi Yufeng Mao Ji Zhou Lianshe Fu Shikao Shi
Journal of Advanced Ceramics2026,Vol.15Issue(3):P.155-166,12.
Journal of Advanced Ceramics2026,Vol.15Issue(3):P.155-166,12.DOI:10.26599/JAC.2026.9221254
Realizing intense deep-far-red broadband emission derived from mica ceramics through isomorphic cation substitution/doping for plant cultivation lighting and latent fingerprint identification
摘要
关键词
mica ceramics/luminescence/transition metal Mn^(2+)/rare earth Eu^(2+)/isomorphic cation substitution/doping分类
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Mengrou Jiang,Na Qi,Yufeng Mao,Ji Zhou,Lianshe Fu,Shikao Shi..Realizing intense deep-far-red broadband emission derived from mica ceramics through isomorphic cation substitution/doping for plant cultivation lighting and latent fingerprint identification[J].Journal of Advanced Ceramics,2026,15(3):P.155-166,12.基金项目
financially supported by the Southwest United Graduate School Research Program(No.202302AO370008) (No.202302AO370008)
the Natural Science Foundation of China(No.51972097) (No.51972097)
the scope of the projects CICECOAveiro Institute of Materials(Nos.UIDB/50011/2020,UIDP/50011/2020,and LA/P/0006/2020) (Nos.UIDB/50011/2020,UIDP/50011/2020,and LA/P/0006/2020)
financed by national funds through the FCT/MCTES(PIDDAC)。 (PIDDAC)