材料科学
荧光粉
二极管
白光
光电子学
猝灭(荧光)
热的
发光二极管
光化学
光学
荧光
物理
气象学
化学
作者
Shan‐Ping Wang,Wen‐Wen Dong,Pulin Cao,Tian Xue,Dongdong Xu,Jun Zhao,Dong‐Sheng Li,Qichun Zhang
标识
DOI:10.1002/adom.202500439
摘要
Abstract Although dye‐encapsulated metal‐organic framework (dye@MOF) phosphors exhibit excellent advantages (e.g., high quantum yield (QY) and luminescence tunability) in white light emitting diodes (WLEDs) lighting, the considerable fluorescence quenching of these dye@MOF phosphors remains an unmet challenge due to their low thermal conductivity and strong thermal accumulation. In this research, a high QY dye@MOF phosphor (QY = 78.4%) is successfully prepared using the secondary growth method. Through in situ doping of hexagonal boron nitride (BN), a yellow phosphor dye@MOF/BN is synthesized to mitigate thermal quenching and improve phosphor stability in WLEDs. The WLEDs constructed with 450 nm blue LED chips exhibit a temperature reduction of 10.2 °C at a current of 10 mA after continuous operation for 8 hours, compared to those fabricated by pristine phosphor. The dye@MOF/BN based WLEDs maintain high performance with a luminous efficacy of 93.89 lm W −1 , color rendering index of 86.4, and QY of 64.4%, indicating that the proposed strategy effectively improves heat dissipation without compromising optical performance.
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