...
首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Pressure induced structural and optical properties of cubic phase SnSe: An investigation for the infrared/mid-infrared optoelectronic devices
【24h】

Pressure induced structural and optical properties of cubic phase SnSe: An investigation for the infrared/mid-infrared optoelectronic devices

机译:立方相SNSE的压力诱导结构和光学性质:红外/中红外光电器件的研究

获取原文
获取原文并翻译 | 示例

摘要

The narrow bandgap Tin Selenide (SnSe) is a promising material for optoelectronic, photovoltaic and thermoelectric applications. A new phase cubic π-SnSe is investigated under pressure for the first time. The studies were carried out by applying uniaxial hydrostatic pressure on 7t-SnSe structure from 0 GPa to 40 GPa. The results indicate that the structural parameters such as lattice parameters and cell volume show inverse relation to the pressure and shows smooth decreasing behaviour from 0 to 40 GPa. The bandgap of π-SnSe shows a significant variation at different external hydrostatic pressure (GPa). At 0 GPa its bandgap nature is direct and when pressure started to increase from 5 to 30 GPa it shows an indirect nature, and at further increase of pressure it started to exhibit the metallic behaviour (35-40 GPa). From the detailed analysis of the optical properties, it is concluded that external pressure might be the key reason to enhance the near/mid infrared light activity. The value of static dielectric constant and refractive index changes from 10.10 to 76.20 and 3.18 to 8.74 respectively as pressure increases from 0 to 40 GPa. Also, absorption energy increases as new peaks started to emerge with the increase in pressure. Moreover conduction shows substantial variation from 4.63 to 10.80 (1/fs) with pressure. The optical property enhancement is mostly due to the pressure modified electronic structures of π-SnSe (cubic phase). The tuning/manipulation of the structural and optical properties of π-SnSe suggest that this new cubic phase has a wide range of applications for pressure based optoelectronic systems.
机译:窄带凝胶锡硒化锡(SNSE)是光电,光伏和热电应用的有希望的材料。在第一次压力下在压力下进行新的相立方π-SNSE。通过在0GPa至40GPa的7t-SnSE结构上施加单轴静水压力来进行研究。结果表明,晶格参数和细胞体积的结构参数显示与压力的反比异性,并且显示出从0到40GPa的平滑降低行为。 π-SNSE的带隙显示出不同的外部静水压力(GPA)的显着变化。在0 GPA时,其带隙性质是直接的,当压力从5到30 GPA增加时,它显示间接性质,并且在开始表现出金属行为(35-40GPa)的压力下进一步增加。根据光学性质的详细分析,结论是外部压力可能是增强近/中红外光活动的关键原因。静电介电常数和折射率的值分别从10.10到76.20和3.18至8.74变化,因为压力从0到40GPa增加。而且,随着新峰开始随压力的增加而增加,吸收能量增加。此外,传导显示了4.63至10.80(1 / F)的大量变化,压力。光学性质增强主要是由于π-SNSE(立方相位)的压力改性电子结构。 π-SNSE的结构和光学性能的调谐/操纵表明,这种新的立方相具有广泛的基于压力的光电系统应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号