Chair of Computational Materials Design, Faculty of Materials Science , Kim Il Sung University , Ryongnam-Dong, Taesong District, Pyongyang , Democratic People's Republic of Korea.
School of Materials Science and Engineering , Nanyang Technological University , Nanyang Avenue , 639798 Singapore.
Inorg Chem. 2019 Apr 1;58(7):4134-4140. doi: 10.1021/acs.inorgchem.8b03095. Epub 2019 Mar 13.
Using density functional theory calculations, we explore the structural, electronic, and optical properties of the inorganic Ge-based halide perovskites AGeX (A = Cs, Rb; X = I, Br, Cl) that can possibly be used as light absorbers. We calculate the lattice parameters of the rhombohedral unit cell with an R3 m space group, frequency-dependent dielectric constants, photoabsorption coefficients, effective masses of charge carriers, exciton binding energies, and electronic band structures by use of PBEsol and HSE06 functionals with and without SOC effect. We also predict the absolute electronic energy levels with respect to the external vacuum level by using the (001) surfaces with AX and GeX terminations, demonstrating their strong dependence on the surface terminations. The calculated results are found to be in reasonable agreement with the available experimental data for the cases of CsGeX, while for the cases of RbGeX they are predicted for the first time in this work. We reveal that replacement of Cs with Rb can offer reasonable flexibility in optoelectronic properties matching for solar cell design and optimization, while X anion exchange gives rise to large changes.
利用密度泛函理论计算,我们研究了可能用作光吸收体的无机 Ge 基卤化物钙钛矿 AGeX(A = Cs,Rb;X = I,Br,Cl)的结构、电子和光学性质。我们使用 PBEsol 和 HSE06 泛函(带和不带 SOC 效应)计算了具有 R3m 空间群的菱面体单胞的晶格参数、频率相关介电常数、光吸收系数、载流子有效质量、激子结合能和电子能带结构。我们还通过使用 AX 和 GeX 终止的(001)表面,预测了相对于外部真空能级的绝对电子能级,表明它们强烈依赖于表面终止。对于 CsGeX 的情况,计算结果与现有实验数据吻合良好,而对于 RbGeX 的情况,则是首次在这项工作中进行预测。我们发现,用 Rb 取代 Cs 可以为太阳能电池设计和优化提供合理的光电性质匹配的灵活性,而 X 阴离子交换则会引起很大的变化。