Electronic and Optical Properties of CH3NH3SnI3 and CH(NH2)2SnI3 Perovskite Solar Cell

Nguyen Thi Han, Vo Khuong Dien, Ming-Fa Lin
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引用次数: 1

Abstract

Using first‐principles calculations, a study on the electronic and optical characteristics of perovskite solar cells containing the orthorhombic phases CH3NH3SnI3 and CH(NH2)2SnI3 is conducted. The analysis includes the examination of relaxed geometry structures, electronic band structures, charge density distributions, and van Hove singularities in the density of states to thoroughly examine the orbital hybridizations in chemical bonds. The optical properties of the materials with and without excitonic effects by analyzing dielectric functions, energy loss functions, absorption coefficients, and reflectance spectra are also studied. The findings identify the close connections between the initial and final orbital hybridizations, as well as prominent optical excitations. Based on the computational predictions, It is believed that lead‐free materials such as CH3NH3SnI3 and CH(NH2)2SnI3 are promising candidates for photovoltaic applications and are worth experimental testing.
CH3NH3SnI3和CH(NH2)2SnI3钙钛矿太阳能电池的电子和光学性质
利用第一性原理计算,对含有CH3NH3SnI3和CH(NH2)2SnI3正交相的钙钛矿太阳能电池的电子和光学特性进行了研究。分析包括对弛豫几何结构、电子能带结构、电荷密度分布和态密度中的van Hove奇点的检查,以彻底检查化学键中的轨道杂化。通过分析介电函数、能量损失函数、吸收系数和反射光谱,研究了具有激子效应和不具有激子效应的材料的光学特性。这些发现确定了初始轨道杂化和最终轨道杂化之间的密切联系,以及突出的光学激发。基于计算预测,认为CH3NH3SnI3和CH(NH2)2SnI3等无铅材料是光伏应用的有希望的候选者,值得实验测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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