Shawahni Areej M, Abu-Jafar Mohammed S, Jaradat Raed T, Ouahrani Tarik, Khenata Rabah, Mousa Ahmad A, Ilaiwi Khaled F
Physics Department, An-Najah N. University, P.O. Box 7, Nablus, Palestine.
Ecole Supérieure en Sciences Appliquées, B.P. 165, Tlemcen 13000, Algeria.
Materials (Basel). 2018 Oct 22;11(10):2057. doi: 10.3390/ma11102057.
The structural, mechanical, electronic and optical properties of SrTMO₃ (TM = Rh, Zr) compounds are investigated by using first principle calculations based on density functional theory (DFT). The exchange-correlation potential was treated with the generalized gradient approximation (GGA) for the structural properties. Moreover, the modified Becke-Johnson (mBJ) approximation was also employed for the electronic properties. The calculated lattice constants are in good agreement with the available experimental and theoretical results. The elastic constants and their derived moduli reveal that SrRhO₃ is ductile and SrZrO₃ is brittle in nature. The band structure and the density of states calculations with mBJ-GGA predict a metallic nature for SrRhO₃ and an insulating behavior for SrZrO₃. The optical properties reveal that both SrRhO₃ and SrZrO₃ are suitable as wave reflectance compounds in the whole spectrum for SrRhO₃ and in the far ultraviolet region (FUV) for SrZrO₃.
采用基于密度泛函理论(DFT)的第一性原理计算方法,研究了SrTMO₃(TM = Rh,Zr)化合物的结构、力学、电子和光学性质。对于结构性质,采用广义梯度近似(GGA)处理交换关联势。此外,对于电子性质,还采用了修正的贝克-约翰逊(mBJ)近似。计算得到的晶格常数与现有的实验和理论结果吻合良好。弹性常数及其导出模量表明,SrRhO₃本质上是延性的,而SrZrO₃是脆性的。利用mBJ-GGA进行的能带结构和态密度计算预测,SrRhO₃具有金属性质,而SrZrO₃具有绝缘行为。光学性质表明,SrRhO₃和SrZrO₃都适合作为全光谱中SrRhO₃的波反射化合物以及SrZrO₃在远紫外区域(FUV)的波反射化合物。