Broadband orange-emitting Sr 3Si 8O 4N 10:Eu 2+ phosphor discovered by a modified single-particle-diagnosis approach

荧光粉 单斜晶系 结晶学 晶体结构 X射线晶体学 材料科学 空间组 单晶 发光 分析化学(期刊) 物理 化学 衍射 光电子学 光学 色谱法
作者
Le Wang,Guozhen Ding,Shuxing Li,Shiro Funahashi,Takashi Takeda,Lu Yin,Pei Liang,Naoto Hirosaki,Rong‐Jun Xie
出处
期刊:Journal of Advanced Ceramics [Springer Nature]
卷期号:12 (4): 734-746 被引量:15
标识
DOI:10.26599/jac.2023.9220716
摘要

Discovery of new phosphors with desired properties is of great significance for developing high optical quality solid-state lighting. The single-particle-diagnosis approach is an effective way to search novel phosphors by analyzing tiny single crystals screened from the fired powder mixtures. In this work, a broadband orange-emitting phosphor of Sr3Si8O4N10:Eu2+ for solid state lighting was discovered by this method. The new oxonitridosilicate crystallizes in the monoclinic space group of P21/n (No. 14) with cell parameters of a = 4.8185 Å, b = 24.2303 Å, c = 10.5611 Å, β = 90.616°, and Z = 4. The crystal structure of Sr3Si8O4N10 was determined from the single-crystal X-ray diffraction (XRD) data of a single crystal, which is made up of a three-dimensional framework consisting of vertex-sharing SiN4 and SiN3O tetrahedra. Sr2+ ions occupy five crystallographic sites and have coordination numbers between 6 and 8 with one ordered Sr and other four disordered Sr atoms. The multiple Sr sites lead to a broadband emission centered at 565–600 nm and a bandwidth of 128–138 nm. The internal and external quantum efficiencies (IQE/EQE) of the title phosphor are 48.6% and 29.1% under 450 nm excitation, respectively. To improve the accuracy and speed of distinguishing phosphor particles in fired powder mixtures, a microscopic imaging spectroscopy is developed and demonstrated to modify the single-particle-diagnosis method.

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