Structural and vibrational characteristics of Ge-S-Br glass system: ab initio calculation and Raman study

IF 1.2 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
X. C. Han, K. Yu, J. Q. Bao, Y. L. Tong
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引用次数: 0

Abstract

To improve the understanding of the structure network of chalcogenide glass, we report an investigation of the structure and vibrational property of the Ge-S-Br system chalcogenide glass. The structural origin was interpreted by the result of ab initio calculation performed on the basic units such as ethane-like(ETH) structure(Ge2S6 and Ge2Br6),edge-sharing(ES) structure Ge2S2SnBr4-n (n=0,1,2,3,4) and isolated GeSnBr4-n tetrahedron (n=0,1,2,3,4), which represent the local structure of Ge-S-Br glassy system. In addition, We have compared the experimental spectra of GeS2, GeS3Br, GeSBr2 glasses and liquid GeBr4 to the calculated main vibrational modes of basic units by ab initio calculation. The calculated vibrational modes of the GeSnBr4-n cluster are assigned by group theory. Moreover, the symmetrical stretching modes related to the Ge-S and Ge-Br bond are in accordance with the vibrational coupling theory. The variation of calculated main vibrational modes of GeSmBrn clusters reveals the structure formations of Ge-S-Br glassy system with different S/Br ratios, which can be in agreement with vibrational spectra of Ge-S-Br glass.
Ge-S-Br 玻璃体系的结构和振动特性:ab initio 计算和拉曼研究
为了加深对卤化物玻璃结构网络的理解,我们报告了对 Ge-S-Br 系统卤化物玻璃的结构和振动特性的研究。通过对代表 Ge-S-Br 玻化体系局部结构的类乙烷(ETH)结构(Ge2S6 和 Ge2Br6)、分边(ES)结构 Ge2S2SnBr4-n (n=0,1,2,3,4)和孤立的 GeSnBr4-n 四面体(n=0,1,2,3,4)等基本单元进行ab initio 计算,解释了其结构起源。此外,我们还将 GeS2、GeS3Br、GeSBr2 玻璃和液态 GeBr4 的实验光谱与通过 ab initio 计算得出的基本单元主要振动模式进行了比较。计算出的 GeSnBr4-n 簇的振动模式是通过群论分配的。此外,与 Ge-S 和 Ge-Br 键有关的对称伸展模式也符合振动耦合理论。计算得到的 GeSmBrn 簇的主要振动模式的变化揭示了不同 S/Br 比的 Ge-S-Br 玻璃体系的结构形式,这与 Ge-S-Br 玻璃的振动光谱是一致的。
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来源期刊
Chalcogenide Letters
Chalcogenide Letters MATERIALS SCIENCE, MULTIDISCIPLINARY-PHYSICS, APPLIED
CiteScore
1.80
自引率
20.00%
发文量
86
审稿时长
1 months
期刊介绍: Chalcogenide Letters (CHL) has the aim to publish rapidly papers in chalcogenide field of research and appears with twelve issues per year. The journal is open to letters, short communications and breakings news inserted as Short Notes, in the field of chalcogenide materials either amorphous or crystalline. Short papers in structure, properties and applications, as well as those covering special properties in nano-structured chalcogenides are admitted.
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