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首页> 外文期刊>International Journal of Quantum Chemistry >A theoretical study of the structural, thermoelectric, and spin-orbit coupling influenced optoelectronic properties of CsTmCl3 halide perovskite
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A theoretical study of the structural, thermoelectric, and spin-orbit coupling influenced optoelectronic properties of CsTmCl3 halide perovskite

机译:CSTMCL3卤化物钙钛矿结构,热电和旋转轨道耦合影响的理论研究

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摘要

This first principles study explores the structural, electronic, optical, and thermoelectric properties of the CsTmCl3 halide perovskite using density functional theory. The structural and thermoelectric properties are calculated without considering the spin-orbit coupling (SOC), while both the electronic and optical properties are calculated with and without the SOC effect. A comparison of the results obtained with and without SOC reveals that inclusion of the SOC effect reduces the band gap from 1.18 to 0.99 eV due to shifting of the Tm-d states toward the Fermi level. However, direct nature of the band gap remains the same in both the cases. The effect of SOC on the optical properties is, however, only visible in shifting of the third characteristic peak to lower energies. Strong optical absorption in the visible and ultraviolet regions shows effectiveness of CsTmCl3 in the optical devices working in these regions. Moreover, the calculated transport properties reveal CsTmCl3 as a useful thermoelectric material at room temperature.
机译:第一个原理研究探讨了CSTMCL3卤化物钙钛矿的结构,电子,光学和热电性能,使用密度函数理论。计算结构和热电性能而不考虑旋转轨道耦合(SOC),而电子和光学性质都是用和没有SOC效应计算的。使用和不具有SOC获得的结果的比较揭示了由于TM-D状态朝向费米水平的转换,该窗口的包含从1.18到0.99的电流降低了带隙。然而,在这种情况下,带隙的直接性质保持不变。然而,SOC对光学性质的影响仅在将第三特征峰的变速下可见到较低的能量。可见光和紫外区域中的强光学吸收显示了CSTMCL3在这些区域中工作的光学器件中的CSTMCL3的有效性。此外,计算的传输性能将CSTMCL3显示为室温的有用热电材料。

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