荧光粉
X射线晶体学
材料科学
X射线光谱学
结晶学
分析化学(期刊)
矿物学
物理
化学
衍射
光谱学
光学
光电子学
色谱法
量子力学
作者
Tao Zhang,Linfang Long,Biqing Song,Fangsong Liu,Yunzheng Liu,Daoyuan Ma,Libin Xia
出处
期刊:Journal of The Optical Society of America B-optical Physics
[The Optical Society]
日期:2024-10-02
卷期号:41 (11): 2414-2414
被引量:1
摘要
Near-infrared (NIR) phosphors enhance the growth of plants due to their superior penetration. However, relatively high thermal quenching and low quantum efficiency restrict the development of NIR phosphors. In this study, Y 3-x Ba x Al 5-x Si x O 12 :Cr 3+ phosphors (YBAS:Cr 3+ ) with varying concentrations of Ba 2+ -Si 4+ and Cr 3+ were studied. The results demonstrate high-purity phases are obtained with doping Ba 2+ -Si 4+ and Cr 3+ . The Ba 2+ -Si 4+ doping enhances crystallinity and near-spherical particles are synthesized. The theoretical calculations indicate a significant reduction in bandgap with doping Ba 2+ -Si 4+ , resulting in impurity levels appearing in the valence band region. The state density calculation shows that the band formation is contributed by all elements. The optimal Ba 2+ -Si 4+ doping concentration is 0.05 mol and the Cr 3+ doping content is 0.09 mol. The critical distance ( R c ) is 16.62 Å. Dipole–dipole interactions and radiation reabsorptions are main concentration quenching mechanisms. Lattice distortions occur with the introduction of Ba 2+ -Si 4+ and the value ( D r ) is 0.052. The YBAS:0.09Cr 3+ phosphor shows a crystal field strength with a Dq/B value of 2.76. The phosphor exhibits a high quantum efficiency (73.42%), superior thermal quenching resistance (∼70% initial intensity at 150°C), and a suitable fluorescence lifetime (130.04 µs). A near-infrared pc-LED with YBAS:0.09Cr 3+ phosphor displays a high output power of 167.12 mW and a moderate conversion efficiency of 3.82%.
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