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First-principles calculations of the stibnite at the level of modified Becke-Johnson exchange potential

机译:修饰Becke-Johnson交换潜力水平的锑计算的第一原理计算

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The demand for cheaper, nontoxic and earth-abundant materials as absorbing layer for solar cell is immensely needed to replace scarce, toxic and expensive one. In this regard, chalcogenide materials have considerably attracted the attention of a lot of researchers because of showing a great potential for different applications. Stibnite (Sb2S3), a chalcogenide binary material is considerably investigated for exploiting its potential for different energy technologies being a less toxic, abundantly available, stable and efficient, which are the fundamentals for sustainability as well as to realize the dream of green energy. In this study, theoretical calculations of the structural, electronic and optical properties of stibnite (Sb2S3) crystal structure are presented using the full potential (FP) linearized augmented plane wave (LAPW) framed within density functional theory (DFT). To incorporate the exchange-correlation part in the total energy functional, besides the local density approximation (LDA), Wu-Cohen parameterized generalized gradient approximation (WC-GGA), Perdew-Burke-Ernzerhof parameterized generalized gradient approximation (PBE-GGA), and Perdew-Burke-Ernzerhof generalized gradient approximation for solids and surfaces (PBEsol-GGA) are used for the calculations of the structural parameters, where the Trans-Blaha approach of the modified Becke-Johnson (TB-mBJ) potential is used to get more reliable results for the fundamental band gap energy value. These calculations are performed by involving spin-orbit coupling (SOC) contribution. Additionally, optical properties, such as imaginary and real parts of the dielectric function, optical conductivity, absorption coefficient, refractive index, reflectivity, and electron energy loss function are analyzed. Our first-principles calculations show that Wu-Cohen GGA (WC-GGA) reproduces results for lattice parameters comparable to the experimental measurements. The obtained results of the band gap energy and optical properties with TB-mBJ potential are also closer to the experimental data and, endorse its potentiality for the photovoltaics applications.
机译:对太阳能电池吸收层的更便宜,无毒和地球丰富的材料的需求非常需要更换稀缺,毒性和昂贵的材料。在这方面,由于对不同应用的潜力显示出很大的潜力,硫属化物材料具有很大吸引了许多研究人员的注意。 Stibnite(SB2S3),一种硫属元素化物二进制材料可大大研究,以利用其对不同能源技术的潜力,这是毒性,丰富的,稳定和高效,这是可持续性的基本原则以及实现绿色能源的梦想。在该研究中,使用密度泛函理论(DFT)内的全电位(FP)线性化的增强平面波(LAPW)来提出Stibnite(SB2S3)晶体结构的结构,电子和光学结构的理论计算。为了在总能量函数中纳入交换相关部分,除了局部密度逼近(LDA),Wu-Cohen参数化广义梯度近似(WC-GGA),Perdew-Burke-Ernzerhof参数化广义梯度近似(PBE-GGA),固体和表面(PBESOL-GGA)的广义梯度近似的Perdew-Burke-Ernzerhof用于计算结构参数的计算,其中修改的BECKE-JOHNSON(TB-MBJ)潜力的跨性BLAHA方法用于获得基本带隙能量值更加可靠的结果。通过涉及旋转轨道耦合(SOC)贡献来执行这些计算。另外,分析了光学性质,例如介电函数,光导,吸收系数,折射率,反射率和电子能量损失函数的虚构和实影。我们的第一原理计算表明,Wu-Cohen GGA(WC-GGA)再现与实验测量相当的晶格参数的结果。具有TB-MBJ电位的带隙能量和光学性能的所得结果也更接近实验数据,并且支持其对光伏应用的潜力。

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