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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Critical Fluctuations and Anharmonicity in Lead Iodide Perovskites from Molecular Dynamics Supercell Simulations
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Critical Fluctuations and Anharmonicity in Lead Iodide Perovskites from Molecular Dynamics Supercell Simulations

机译:分子动力学超级晶体模拟中铅碘化铅钙锌矿的临界波动与厌声

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We present a systematic study based on first-principles molecular dynamics simulations of lead iodide perovskites with three different cations, including methylammonium (MA), formamidinium (FA), and cesium. Using the high-temperature perovskite structure as a reference, we investigate the instabilities that develop as the material is cooled down to 370 K. All three perovskites display anharmonicity in the motion of the iodine atoms, with the stronger effect observed for the MAPbI(3) and CsPbI3. At high temperature, this behavior can be traced back to the reduced effective size of the Cs+ and MA(+) cations. MAPbI(3) undergoes a spontaneous phase transition within our simulation model driven by the dipolar interaction between neighboring MA cations as the temperature is decreased from 450 K. The reverse transformation from tetragonal to cubic is also monitored through the large distribution of the octahedral tilting angles accompanied by an increase in the anharmonicity of the iodine atom motion. Both MA and FA hybrid perovskites show a strong coupling between the molecular orientations and the local lattice deformations, suggesting mixed order-disorder/displacive characters of the high-temperature phase transitions.
机译:我们基于具有三种不同阳离子的铅碘化物钙酸盐的第一原理分子动力学模拟的系统研究,包括甲基铵(MA),甲脒(FA)和铯。使用高温钙钛矿结构作为参考,研究了将材料冷却至370k的稳定性。所有三个钙钛矿在碘原子的运动中显示了AnhArmonicity,对于MAPBI观察到的效果更强(3 )和cspbi3。在高温下,这种行为可以追溯到CS +和MA(+)阳离子的减少的有效尺寸。 MAPBI(3)在由相邻MA阳离子之间的偶极相互作用驱动的模拟模型中进行自发相转变,因为温度从450 K降低。通过八面体倾斜角度的大分布,也监测来自四边形到立方的反向变换伴随着碘原子运动的厌声的增加。 MA和FA杂交钙酸盐均显示出分子取向和局部格子变形之间的强耦合,表明高温相变的混合阶紊乱/位移特征。

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