荧光粉
材料科学
发光
紫外线
兴奋剂
红外线的
激发
光电子学
持续发光
硼
离子
波长
光学
物理
热释光
核物理学
量子力学
作者
Zuobin Tang,Feng Du,Hu Liu,Zhihua Leng,Xiaoqin Sun,Na Wang,Meidan Que,Yuhua Wang
标识
DOI:10.1002/adom.202102204
摘要
Abstract Ultrabroadband near‐infrared (NIR) luminescent materials are important components for compact light sources used in food testing, medical and biosensing applications. A major long‐term challenge facing NIR luminescent materials is to design ultrabroadband phosphors activated by the rare‐earth ions characterized by the f – d transition. Here, an Eu 2+ ‐doped Ba 3 Lu(BO 3 ) 3 phosphor, showing peculiar luminescence characteristics such as a long emission wavelength ≈720 nm, a broader full width at half maximum of ≈197 nm, a large Stokes shift of ≈8300 cm –1 , and a longer decay time ≈5.58 µs, is reported. The smaller Eu 2+ occupy the irregular and larger Ba 2+ sites further reducing the symmetry, resulting in the increased splitting of the degenerate 5d level, thereby lowering the energy of Eu 2+ emission. The longer decay time is also associated with the irregular Ba sites. This work improves the NIR mechanism of Eu 2+ and opens up a new idea for exploring promising broadband NIR luminescent materials.
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