Khan Junaid, Khan Matiullah, Sharma Tanvi, Boukhris Imed, Al-Buriahi M S
Department of Physics, Kohat University of Science and Technology Kohat, Kohat, Pakistan.
Department of Physics, VMK Science College, Mumbai University, Mumbai, India.
J Comput Chem. 2025 Jan 5;46(1):e70010. doi: 10.1002/jcc.70010.
We investigate the comprehensive analysis's structural, electronic, optical, and elastic properties of Cs₂NaScX₆ (X = Cl, Br) double perovskites using density functional theory (DFT) implemented by the WIEN2k code. The results show that both compounds are in cubic phases. The calculated tolerance factors show both are stable compounds. The computed optimized lattice parameters are Cs₂NaScX₆ (X = Cl, Br) are 10.72 Å and 12.01 Å, respectively. Employing a modified Becke-Johnson (mBJ) potential electronic nature shows that both compounds are in semiconductor nature, that is, 3.138 eV and 3.977 eV. The calculated elastic constant and perimeters show the Cs₂NaScX₆ (X = Cl, Br) are mechanical stables and also ductile and anisotropic nature. The optical properties described the range of photon energies from 0 to 10 eV, revealing pronounced absorption within the visible spectrum, highlighting their considerable promise for transformative innovations in photovoltaic technology. These double perovskites exhibit superior absorption characteristics compared to their Cs₂NaScX₆ (X = Cl, Br) analogues, thus laying the groundwork for significant advancements in solar energy conversion and photovoltaic applications.
我们使用WIEN2k代码实现的密度泛函理论(DFT),研究了Cs₂NaScX₆(X = Cl,Br)双钙钛矿的综合分析的结构、电子、光学和弹性性质。结果表明,这两种化合物均为立方相。计算得到的容差因子表明它们都是稳定的化合物。计算得到的优化晶格参数,Cs₂NaScX₆(X = Cl,Br)分别为10.72 Å和12.01 Å。采用修正的Becke-Johnson(mBJ)势电子性质表明,这两种化合物均为半导体性质,即3.138 eV和3.977 eV。计算得到的弹性常数和周长表明Cs₂NaScX₆(X = Cl,Br)具有机械稳定性,并且具有延展性和各向异性。光学性质描述了光子能量从0到10 eV的范围,揭示了在可见光谱内有明显的吸收,突出了它们在光伏技术变革性创新方面的巨大潜力。与它们的Cs₂NaScX₆(X = Cl,Br)类似物相比,这些双钙钛矿表现出优异的吸收特性,从而为太阳能转换和光伏应用的重大进展奠定了基础。