Modelling of mixed-phase MAPbI3

E. Nonni, D. Rossi, M. A. der Maur, A. Di Carlo
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Abstract

Both x-ray diffraction (XRD) and photo-luminescence (PL) characterizations of methylammonium lead iodide perovskite (MAPbI3) reveal signatures of a coexistence of the tetragonal and orthorhombic phases over a wide range of temperatures, suggesting that the phase transition does not happen sharply at a temperature of 164 K as reported in literature. To understand the causes of this discrepancy we investigated the evolution of the phase mixture from 300 K down to 80 K and its influence on electrical device characteristics. For this we developed a numerical approach to extract effective electrical parameters like resistivity for the mixed-phase MAPbI3 as a function of temperature and volume ratio of the two phases. The spatial distribution of the tetragonal and orthorhombic phases and their evolution with temperature has been extracted from measured XRD maps, employing a Monte Carlo algorithm to interpolate between measured temperatures. The electrical simulations have been performed by means of the drift-diffusion model.
混合相MAPbI3的建模
甲基铵碘化铅钙钛矿(MAPbI3)的x射线衍射(XRD)和光发光(PL)表征显示在较宽的温度范围内四方相和正交相共存的特征,表明在文献报道的164 K温度下,相变不会急剧发生。为了理解这种差异的原因,我们研究了相混合物从300 K到80 K的演变及其对电气器件特性的影响。为此,我们开发了一种数值方法来提取混合相MAPbI3的有效电参数,如电阻率,作为两相温度和体积比的函数。利用蒙特卡罗算法在测量温度之间进行插值,从XRD图中提取了四方相和正交相的空间分布及其随温度的演化。利用漂移-扩散模型进行了电学模拟。
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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