材料科学
荧光粉
半最大全宽
量子效率
光电子学
离子
激发态
热稳定性
发光
发射强度
分析化学(期刊)
能量转换效率
光电效应
最大功率原理
光致发光
陶瓷
光学
发射光谱
电极
发光二极管
作者
Wei Yang,Han Gu,Yuanyuan Yi,Ye Jin,Fancheng Meng,Guotao Xiang,Jiahua Zhang,Li Ma,Xiaojun Wang,Haishen Ren
标识
DOI:10.1002/adom.202503304
摘要
Abstract A series of high‐performance NIR phosphors Mg 4 Al 4.5 Ga 2.45 B 1.05 O 16 : xCr 3+ (MAGBO: xCr 3+ ) with high internal quantum efficiency (IQE, 95.7%), excellent thermal stability (87.5% at 373 K and 73% at 423 K), and various, especially large FWHM (250 nm) are designed for wireless communication as excited by near‐ultraviolet LEDs. The emission is adjusted from 600–950 to 670–1370 nm with a peak at 703–878 nm and a narrow band (FWHM = 49 nm) to an ultra‐broadband (FWHM = 250 nm) as the Cr 3+ ions increase. The variations in FWHM and emissions at low temperatures verify three emission centers. Notably, the energy transfer from the high‐energy Cr 3+ center to the low‐energy Cr 3+ ions in MAGBO is systematically investigated using the temperature‐dependent emission and the decay curves. An NIR pc‐LED device combined with the MAGBO:0.15Cr 3+ phosphor with a 395 nm chip demonstrates stable NIR emission under different driving currents. The photoelectric conversion efficiency is 15.8% at 20 mA, and an output power of 120 mW is achieved at 500 mA. The fabricated pc‐LED device is successfully applied for rapid imaging of hand and fist veins, night vision of objects, and encrypted information reading, especially in wireless communication.
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