荧光粉
兴奋剂
猝灭(荧光)
热的
材料科学
分析化学(期刊)
荧光
矿物学
化学
光电子学
物理
光学
热力学
环境化学
作者
Daochuan Duan,Shijie Yu,WU Yu-bo,Yan Dong,Qiyue Shao,Jianqing Jiang
摘要
Abstract Far‐red‐emitting (700−740 nm) phosphors are essential for the fabrication of plant lighting phosphor‐converted light‐emitting diodes (pc‐LEDs). However, the development of highly efficient, thermally stable, and spectrally matched far‐red phosphors still remains a challenge. Herein, far‐red GdAlO 3 :Cr 3+ (GAO:Cr 3+ ) phosphors were synthesized via solid‐state reaction and investigated for plant lighting pc‐LED applications. A low‐temperature flux‐assisted synthesis strategy was adopted to improve the crystalline quality, suppress the defect formation, and maintain the valence state of Cr 3+ in the phosphors, finally leading to significant luminescent enhancement (∼10 times). The GAO:Cr 3+ phosphors show the 2 E sharp‐line emissions around 730 nm, which is highly matched with the far‐red absorption band of plants. The optimized GAO:0.01Cr 3+ phosphor exhibits a high internal quantum efficiency of 98.3% and zero thermal quenching even up to 250°C. The fabricated pc‐LED can generate an overall output power of 78.1 mW at 100 mA drive current, with a high energy conversion efficiency of 25.3%. The findings demonstrate the great potential of GAO:Cr 3+ as far‐red‐emitting phosphor materials for plant growth pc‐LED applications.
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