首页|(163093)Na~+/Ag~+ substitution induced birefringence enhancement from AgGaS_2 to NaGaS_2

(163093)Na~+/Ag~+ substitution induced birefringence enhancement from AgGaS_2 to NaGaS_2

扫码查看
Birefringent materials are of great important as opto-electronic functional devices in solid laser system. Investigations on the design of new birefringent materials with large birefringence is meaningful. In this study, structure-birefringence relationship between AgGaS_2 (AGS) and NaGaS_2 (NGS) was systematically investigated. In the structures, the high ionic Na~+ cations broke the three dimensional (3D) [GaS] network to 2D layers, which results in the regular packing of GaS_4 tetrahedra and further the birefringence (-0.09, nearly twice that of AGS at -1064 nm). Meanwhile, the blue-shift of the UV cutoff edge to 307 nm and a wide band gap of 3.9 eV has been observed in NGS. The property characterizations were carried out using the as-grown NGS single crystal with a size of 4 × 4 × 0.3 mm~3 by high temperature flux method. The results indicate that NGS may be a promising IR birefringent material and the cation substitiition-oriented design strategy could be used to regulate the structure and optical properties of materials.

Crystal GrowthBirefringenceChalcogenidesStructure-property relationship

Yihan Yun、Wenlong Xie、Zhihua Yang

展开 >

CAS Key Laboratory of Functional Materials and Devices for SpecialEnvironments, Xinjiang Technical Institute of Physics & Chemistry, CAS

Xinjiang Key Laboratory of Electronic Information Materials and Devices, 40-1 South Beijing Road, Urumqi 830011, Chin

2022

Journal of Alloys and Compounds

Journal of Alloys and Compounds

EISCI
ISSN:0925-8388
年,卷(期):2022.896
  • 8
  • 49