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增强MgXCl3(X = Rb,Cl)的光电和机械响应以用于先进的能量转换应用。

Enhancing the optoelectronic and mechanical response of MgXCl3 (X = Rb, Cl) for advance energy conversion applications.

作者信息

Khan Junaid, Udin Waqar, Rahman Siddiq Ur, Almaary Khalid S, Jardan Yousef A Bin, Al-Harethi Amira Ali Mohammed, Shah Tawaf Ali, Ajaj Rahaf

机构信息

Department of Physics, Kohat University of Science and Technology, Kohat, KPK, Pakistan.

Office of Research Innovation and Commercialization (ORIC), Bahria University, Karachi Campus, Karachi, Pakistan.

出版信息

Sci Rep. 2025 Aug 12;15(1):29509. doi: 10.1038/s41598-025-97019-x.

Abstract

Using the wien2k package in DFT, the structural, elastic, electrical, and optical characteristics of MgXCl (X = Rb, Ca) were investigated. Structural analysis confirmed the stability of these compounds and revealed that they possessed a cubic structure with the space group of pm-3m 221. The electronic properties of the compounds were analyzed using band structure and density of states (DOS) calculations, revealing their semiconducting nature. To investigate the elastic properties, we examined the elastic constants, anisotropy factor, Pugh ratio, Poisson ratio, and bulk modulus. The ductility of these compounds is indicated by Pugh's ratio, whereas their ionic behavior is inferred from the Cauchy pressure. Optical parameters, including the dielectric function, refractive index, extinction coefficient, reflectivity, optical conductivity, and absorption coefficient, were calculated over an energy range of 0 to 10 eV. This comprehensive study showed that these compounds have significant potential for use in optoelectronic devices.

摘要

使用密度泛函理论(DFT)中的 Wien2k 软件包,对 MgXCl(X = Rb、Ca)的结构、弹性、电学和光学特性进行了研究。结构分析证实了这些化合物的稳定性,并表明它们具有空间群为 pm-3m 221 的立方结构。通过能带结构和态密度(DOS)计算分析了这些化合物的电子性质,揭示了它们的半导体性质。为了研究弹性性质,我们考察了弹性常数、各向异性因子、普格比、泊松比和体模量。这些化合物的延展性由普格比表示,而它们的离子行为则由柯西压力推断得出。在 0 到 10 eV 的能量范围内计算了包括介电函数、折射率、消光系数、反射率、光导率和吸收系数在内的光学参数。这项全面的研究表明,这些化合物在光电器件中具有巨大的应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75c9/12343956/d12546bf5022/41598_2025_97019_Fig1_HTML.jpg

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