荧光粉
材料科学
离子键合
宽带
离子
分析化学(期刊)
结晶学
光电子学
光学
化学
色谱法
量子力学
物理
作者
Shikun Su,Chen Hu,Shaolei Ding,Yutong Sun,Lijie Sun,Yanfei Zou,Lei Zhu,Zonghao Lei,Bing Teng,Degao Zhong
标识
DOI:10.1002/adom.202302383
摘要
Phosphor‐converted near‐infrared (NIR) LEDs are becoming increasingly demanded as miniature, portability, and broad emission spectrum. In this work, a class of Fe 3+ ‐activated double perovskite structured is reported ALaBB′O 6 (A = Ba, Sr, Ca; B–B′ = Li–Te, Mg–Sb) phosphors. Through the co‐substitution strategy at the A‐site and B‐B' sites, the emission spectral intensity and position of Fe 3+ ions can be tuned. Finally, by utilizing Ca 2+ at the A‐site and Mg–Sb co‐substitution for Li–Te, long‐wave NIR emission centered at 995 nm in CaLaMgSbO 6 : 0.6%Fe 3+ with a full width at half maximum of 147 nm and internal quantum efficiency of 54.05% is achieved. The effects of the double perovskite crystal structure on Fe 3+ photoluminescence properties are comprehensively analyzed. NIR LEDs are fabricated by encapsulating UV chips with the synthetic CaLaMgSbO 6 : 0.6%Fe 3+ phosphors, and their application value in night vision, nondestructive biological monitoring, and NIR detection is evaluated.
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