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Nature of the cubic to tetragonal phase transition in methylammonium lead iodide perovskite

机译:甲基铵碘化铅钙钛矿中立方到四方相变的性质

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Hybrid organic-inorganic perovskites, as well as the perovskites in general, are known for their phase complexity evidenced by the stabilization of different polymorphs, and thus an understanding of their regions of stability and transitions can be important for their photovoltaic and optoelectronic technologies. Here we use a multiscale approach based on first-principles calculations with van der Waals corrections and classical force-field molecular dynamics to determine the finite-temperature properties of the tetragonal and cubic phases of CH3NH3PbI3. Temperature effects are implicitly included using the quasi-harmonic approximation that can describe anharmonic behavior due to thermal expansion through the dependence of the harmonic frequencies on structural parameters. Our finite-temperature free-energy surfaces predict the lattice and elastic moduli evolution with temperature, and show in particular that the calculated lattice parameters of the cubic and tetragonal phases are to within 1% of experimental values. Further, our results show that the phonons are the major contributing factor for stabilizing the cubic phase at high temperatures mainly due to the low-energy phonon modes that are associated with the inorganic lattice. On the other hand, the configurational entropy due to CH3NH3+ rotational degrees of freedom is slightly more favored in the cubic phase and amounts to less than 0.2% of the T = 0 K free-energy difference between the two phases. Published by AIP Publishing.
机译:杂化的有机-无机钙钛矿以及一般的钙钛矿以其相复杂性而闻名,这种相复杂性由不同的多晶型物的稳定来证明,因此了解其稳定性和跃迁区域对于其光伏和光电技术可能很重要。在这里,我们使用基于范德华校正和经典力场分子动力学的第一性原理计算的多尺度方法来确定CH3NH3PbI3的四方相和立方相的有限温度特性。使用准谐波近似可以隐含地包括温度影响,该近似谐波可以通过谐波频率对结构参数的依赖性来描述由于热膨胀而引起的非谐波行为。我们的有限温度自由能表面预测了晶格和弹性模量随温度的变化,并特别表明立方和四方相的晶格参数计算值在实验值的1%以内。此外,我们的结果表明,声子是在高温下稳定立方相的主要贡献因素,这主要归因于与无机晶格相关的低能声子模式。另一方面,立方相中因CH3NH3 +旋转自由度引起的构型熵稍受青睐,且小于两相之间T = 0 K自由能差的0.2%。由AIP Publishing发布。

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