论文标题

第一原则研究材料属性和无机卤化物钙钛矿固体解决方案CSPB(i $ _ {1-x} $ br $ _x $)$ _ 3 $ tit High Performance Perovskite太阳能电池

First-Principles Study on Material Properties and Stability of Inorganic Halide Perovskite Solid Solutions CsPb(I$_{1-x}$Br$_x$)$_3$ towards High Performance Perovskite Solar Cells

论文作者

Yu, Chol-Jun, Ko, Un-Hyok, Hwang, Suk-Gyong, Kim, Yun-Sim, Jong, Un-Gi, Kye, Yun-Hyok, Ri, Chol-Hyok

论文摘要

由于其化学稳定性增强,全无机卤化物钙钛矿引起了极大的兴趣,因为它们的化学稳定性增强了钙钛矿太阳能电池。在这项工作中,我们调查了实心解决方案CSPB(I $ _ {1-x} $ br $ _x $)$ _ 3 $ CUCIC阶段的材料属性,通过在密度功能理论框架中应用虚拟晶体近似方法。首先,我们通过验证晶格常数遵循混合比的线性函数来检查虚拟原子(x = i $ _ {1-x} $ br $ _x $)的构造假势的有效性。然后,我们建议将混合HSE函数函数与BR含量X增加线性增加值的想法,这与可用的实验数据非常吻合。计算出的光吸收系数和反射率显示了BR含量的系统变化趋势。我们将CSPBX3,CSX和PBX2的声子分散体计算为稍微改变其体积,从而揭示了CSPBX3的相位不稳定性并计算热力学潜在功能差异。通过将gibbs自由能差异投射到G = 0的平面上,我们确定CSPBX3的p -t图在化学分解上是稳定的,这强调了稳定的区域随着BR含量的增加而逐渐扩展。

All-inorganic halide perovskites have attracted a great interest as a promising light harvester of perovskite solar cells due to their enhanced chemical stability. In this work we investigate the material properties of solid solutions CsPb(I$_{1-x}$Br$_x$)$_3$ in cubic phase by applying the virtual crystal approximation approach within a density functional theory framework. First we check the validity of constructed pseudopotentials of the virtual atoms (X = I$_{1-x}$Br$_x$) by verifying that the lattice constants follow the linear function of mixing ratio. We then suggest an idea of using the hybrid HSE functional with linear increasing value of exact exchange term as increasing the Br content x, which produces the band gaps of CsPbX3 in good agreement with the available experimental data. The calculated light absorption coefficients and reflectivity show the systematic varying tendency to the Br content. We calculate the phonon dispersions of CsPbX3, CsX and PbX2 as slightly changing their volumes, revealing the phase instability of CsPbX3 and calculating the thermodynamic potential function differences. By projecting Gibbs free energy differences onto the plane of G = 0, we determine the P - T diagram for CsPbX3 to be stable against the chemical decomposition, highlighting that the area of being stable extends gradually as the Br content increases.

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