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首页> 外文期刊>Journal of Electronic Materials >Effect of Hydrostatic Pressure on the Structural, Electronic and Optical Properties of SnS2 with a Cubic Structure: The DFT Approach
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Effect of Hydrostatic Pressure on the Structural, Electronic and Optical Properties of SnS2 with a Cubic Structure: The DFT Approach

机译:静压压力对SNS2具有立方结构的结构,电子和光学性质的影响:DFT方法

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摘要

Recently, a cubic structure of polymorphic SnS2 has been synthesized experimentally, which is stable at room temperature. In this paper, we calculated some structural, electronic and optical properties of the cubic SnS2 structure based on the full potential-linearized augmented plane waves method. We also studied the effect of hydrostatic pressure on the physical properties of the cubic SnS2 structure. Structural results show that the compressibility of the cubic SnS2 phase is greater than its trigonal phase and the compressibility decreases with increasing pressure. Investigations of the electronic properties indicate that pressure changes the density of states and the energy band gap increases with increasing pressure. The variation of energy band gap versus pressure is almost linear. We concluded that cubic SnS2 is a semiconductor with an indirect energy band gap, like its trigonal phase. The optical calculations revealed that the dielectric constant decreases with increasing pressure, and the width of the forbidden energy interval increases for electromagnetic wave propagation. Moreover, plasmonic energy and refractive index are changed with increasing pressure.
机译:最近,通过实验合成多态SNS2的立方结构,在室温下稳定。本文基于全电位线性化增大平面波法计算了一些立方SNS2结构的一些结构,电子和光学性质。我们还研究了静水压力对立方SNS2结构物理性质的影响。结构结果表明,立方SNS2相的可压缩性大于其三角相位,并且压力随着压力的增加而降低。电子特性的研究表明压力改变了状态的密度,并且电能带隙随着压力的增加而增加。能量带隙与压力的变化几乎是线性的。我们得出结论,立方SNS2是具有间接能带隙的半导体,如其三角形相。光学计算揭示了介电常数随着压力的增加而减小,并且禁止能量间隔的宽度增加了电磁波传播。此外,压力越来越大的等离子体能量和折射率。

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