Geleta Tesfaye Abebe, Behera Debidatta, Bouri Nabil, Rivera Victor José Ramirez, Gonzalo Fredy Mamani
Department of Agricultural Chemistry, National Taiwan University, Taipei, Taiwan.
Global Development Application Center, MacDermid Alpha Electronics Solutions Company, Taoyuan, Taiwan.
J Comput Chem. 2024 Nov 15;45(30):2574-2586. doi: 10.1002/jcc.27465. Epub 2024 Jul 15.
Metal halide perovskites are crystalline materials with a sharp increase in popularity and rapidly becoming a major contender for optoelectronic device applications. In this work, we provide the optoelectronic features of a possible novel candidate, ZSnCl (Z = Na/K) Sn-based on a detailed numerical simulation. The output of the current computations is compared to the results that are currently available, and a respectable agreement is noted. The studied compounds were cubic in nature and structurally stabe. The mechanical properties reflect the mechanical stability and ductility of the proposed materials. The Sn-based single perovskite compounds proposed in this study are mechanically stable and ductile. The narrow direct band gap for NaSnCl and KSnCl are 1.36 eV and 1.47 eV, respectively, using the HSE06 hybrid function with the Boltztrp2 integrated in Quantum ESPRESSO (QE) software. The effective use of these compounds in perovskite solar cells and other optoelectronic applications was confirmed by optical absorption spectral measurements conducted in the photon energy range of 0-20 eV.
金属卤化物钙钛矿是一类晶体材料,其受欢迎程度急剧上升,迅速成为光电器件应用的主要竞争者。在这项工作中,我们基于详细的数值模拟,给出了一种可能的新型候选物ZSnCl(Z = Na/K)锡基化合物的光电特性。将当前计算结果与现有结果进行了比较,并发现了相当不错的一致性。所研究的化合物本质上为立方晶系且结构稳定。力学性能反映了所提出材料的机械稳定性和延展性。本研究中提出的锡基单钙钛矿化合物具有机械稳定性和延展性。使用集成在量子 espresso(QE)软件中的Boltztrp2和HSE06混合函数,NaSnCl和KSnCl的窄直接带隙分别为1.36 eV和1.47 eV。在0 - 20 eV光子能量范围内进行的光吸收光谱测量证实了这些化合物在钙钛矿太阳能电池和其他光电器件应用中的有效利用。