荧光粉
材料科学
光电子学
光致发光
兴奋剂
量子效率
量子点
吸收(声学)
激发
钙钛矿(结构)
物理
化学
结晶学
量子力学
复合材料
作者
Luyue Niu,Chuang LIU,Kun Zhang,Ci Wang,Lu Liu,Yushi Chu,Jing Ren,Jianzhong Zhang
标识
DOI:10.1002/adom.202302953
摘要
Abstract Lanthanide ions (Ln 3+ ) doped near‐infrared (NIR) phosphors play a critical role in applications requiring a compact, reliable, and economical NIR light source, but as yet they suffer from weak and narrow‐band absorption because of intrinsic photophysical limitations of Ln 3+ . Here, CsPbBr 3 perovskite quantum dots (PQDs) and Nd 3+ co‐doped tellurite glassy phosphor is designed to significantly upgrade the NIR photoluminescence (PL) efficiency of Ln 3+ . Benefiting from the sensitization effect of the PQDs on Nd 3+ , the PL excitation band of Nd 3+ is greatly extended, permitting far more excitation channels that are impossible for conventional Nd 3+ ‐doped glass phosphors. Such glassy phosphors also show a good stability, and when coupled with a commercial UV (or blue) chip, a compact and low‐cost NIR phosphor‐converted LED (pc‐LED) is constructed with a photoelectric conversion efficiency of 2.25% and an output power of 2.55 mW. A proof‐of‐concept demonstration for night vision application is given using the NIR pc‐LED. The excellent overlap with the solar spectrum in the visible portion inspires us to explore the possibility of sunlight excitation, and a net gain of ≈5 dB cm −1 is obtained near the 1064 nm. The implications of the present study are enormous considering diverse combinations of PQDs and Ln 3+ in GCs.
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