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第一性原理研究 CsMO(M=Ta,Nb)化合物在光电器件中的电子、机械、光学和热电性能。

First principle study of electronic, mechanical, optical and thermoelectric properties of CsMO (M = Ta, Nb) compounds for optoelectronic devices.

机构信息

Centre for Advanced Studies in Physics, GC University, Lahore, 54000, Pakistan.

Centre for Advanced Studies in Physics, GC University, Lahore, 54000, Pakistan.

出版信息

J Mol Graph Model. 2019 Jan;86:19-26. doi: 10.1016/j.jmgm.2018.09.011. Epub 2018 Sep 27.

Abstract

The electronic, mechanical, optical and thermoelectric properties of Cesium based perovskites CsMO (M = Nb, Ta) in the cubic phase has been performed through PBEsol-mBJ scheme in the framework of DFT. The electronic band structures and density of states show the studied materials having a direct band gap in the visible range. The mechanical stability and ductile behavior have been analyzed from elastic constants. Moreover, the optical behavior of the studied materials has been analyzed in terms of dielectric functions, refractive index, extinction coefficient, absorption coefficient, optical conductivity, reflectivity and energy loss factor. Finally, the material response with temperature has been elaborated by electrical conductivity, thermal conductivity, Seebeck coefficient, power factor, heat capacity, Hall coefficient, susceptibility and electron density by using BoltzTraP code. This first principle calculation of optical and thermoelectric properties of the novel compounds provides a new route to the experimentalist for the potential application in energy renewable devices.

摘要

通过 PBEsol-mBJ 方案在 DFT 框架内对立方相的 CsMO(M=Nb、Ta)铯基钙钛矿的电子、机械、光学和热电性质进行了研究。电子能带结构和态密度表明,所研究的材料在可见光范围内具有直接带隙。从弹性常数分析了力学稳定性和延展性。此外,还根据介电函数、折射率、消光系数、吸收系数、光学电导率、反射率和能量损耗因子分析了研究材料的光学性质。最后,使用 BoltzTraP 代码通过电导率、热导率、塞贝克系数、功率因数、热容、霍尔系数、磁化率和电子密度来阐述材料对温度的响应。这些新型化合物的光学和热电性质的第一性原理计算为实验家提供了一条新途径,有望应用于可再生能源设备。

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