双折射
单斜晶系
紫外线
化学
极化(电化学)
带隙
透明度(行为)
光电子学
硼
结晶学
热稳定性
光学
八面体
平面的
Crystal(编程语言)
晶体结构
流动双折射
热的
硼酸钡
紫外线
切断
功勋
空间组
作者
Mingyue Gu,Xianchao Zhu,Zhanggui Hu,Yicheng Wu,Yongmin Guo
出处
期刊:Inorganic Chemistry
[American Chemical Society]
日期:2026-02-05
卷期号:65 (6): 3701-3709
被引量:1
标识
DOI:10.1021/acs.inorgchem.5c05985
摘要
Birefringent crystals have become increasingly appealing for versatile polarization devices owing to their ability to modulate the polarized light. However, the efficient synthesis of material with sufficient birefringent value and wide transparency range is still a significant challenge. Herein, a new rare-earth borate birefringent crystal, Li6Lu(BO3)3 (LLBO), was successfully synthesized and comprehensively characterized. LLBO crystallizes in the monoclinic system with space group P21/c, featuring a robust three-dimensional framework constructed from distorted [LuO6] octahedra and planar [BO3] triangles. LLBO exhibits excellent thermal stability up to 1200 °C. Notably, LLBO displays a remarkably short ultraviolet (UV) cutoff edge at 204 nm supplemented by a wide optical band gap of 5.48 eV, demonstrating its excellent transparency in the near-UV regions. The experimentally measured birefringence (Δn = 0.057) displays a good agreement with the theoretical value (Δn = 0.056@1064 nm), confirming that LLBO exhibits pronounced optical anisotropy. The optical characteristics of LLBO derived from theoretical calculations are mainly reliant on the essential structural groups [LuO6] polyhedra and [BO3] triangles. Above results reveal the potential application of LLBO for light polarization modulation and provide novel insights for fabricating short-wave ultraviolet birefringent materials.
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