荧光粉
冷凝
材料科学
化学工程
纳米技术
化学
工程类
物理
光电子学
热力学
作者
Hongwei Zheng,Xiaoming Wang,Zhuo Li,Tianhui Liu,Hui Fu,Hu Zhang,Zupei Yang,Huan Jiao
标识
DOI:10.1021/acs.chemmater.3c03045
摘要
The exploration of new luminescent materials is driven by potential applications in solid-state lighting and display technologies. In this paper, we employed an anionic condensation approach to craft novel oxonitridosilicate compounds by substituting 3O2– with 2N3– in a carefully selected system. This approach enabled us to synthesize a highly condensed oxonitridosilicate compound LaSr4Si5N9O2, which crystallizes in the orthorhombic crystal system with the space group Ama2 (no. 40) and lattice parameters a = 9.2986(1) Å, b = 23.4382(1) Å, c = 5.371(1) Å, V = 1170.55(1) Å3, and Z = 4. The condensation appears inside the layer, with dreier rings originating from neighboring tetrahedra connected by bridging nitride (N[2]). This enriches the possibility of using the approach to design multiple layered or other featured oxonitridosilicates. Furthermore, we investigated the luminescence properties when doped with rare-earth ions. The Pr3+-doped LaSr4Si5N9O2 exhibits a remarkably narrow-band red emission (λem ≈ 618 nm, fwhm ≈ 54 nm) when excited by UV and blue light.
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