卤化物
发光二极管
紫外线
荧光粉
白光
兴奋剂
铅(地质)
材料科学
光电子学
化学
无机化学
地质学
地貌学
作者
Ruifeng Liu,Tianrui Zhou,Yunluo Wang,Tingting Ye,Jianghua Wu,Shihao Ge,Zesen Gao,Futing Sun,Jingshan Hou,Yongzheng Fang,Minghui Wang,Wan Jiang,Lianjun Wang,Haijie Chen
出处
期刊:
[American Chemical Society]
日期:2025-05-15
卷期号:3 (5): 1119-1128
被引量:3
标识
DOI:10.1021/acsaom.5c00082
摘要
Due to the unique electronic structure of rare-earth elements, Ce and Eu doping has emerged as an effective strategy to induce luminescence phenomena in rare-earth doped metal halides. This study investigates the luminescent properties of zero-dimensional (0D) lead-free metal halides, Cs3–xZn1–xCexCl5 (x = 0.03–0.15) and Cs3Zn1–xEuxCl5 (x = 0.03–0.18), focusing on the effects of rare-earth doping on their optoelectronic properties. Specifically, Ce doping at Zn sites results in long-wavelength ultraviolet (UVA) emission centered at 360 nm, while Eu doping leads to high-energy blue emission centered at 445 nm. The photoluminescence lifetimes for Cs2.91Zn0.91Ce0.09Cl5 and Cs3Zn0.85Eu0.15Cl5 are 4.12 and 5.47 μs, respectively. Furthermore, Cs3Zn0.85Eu0.15Cl5 was successfully utilized as a blue phosphor to fabricate a white light-emitting diode (WLED) by combining it with red and green phosphors. The WLED achieved a correlated color temperature (CCT) of 4628 K and a color rendering index (CRI) of 79.2, demonstrating its suitability for solid-state lighting applications. The robust UVA and blue emissions, coupled with their excellent optoelectronic performance, position these materials as promising candidates for advanced optoelectronic devices.
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