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Spontaneous bidirectional ordering of CH3NH3+ in lead iodide perovskites at room temperature: The origins of the tetragonal phase

机译:室温钙碘化钙钛矿中CH3NH3 +的自发双向有序性:四方相的起源

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摘要

CH3NH3PbI3 is a hybrid organic-inorganic material with a perovskite structure and a temperature-dependent polymorphism whose origins are still unclear. Here we perform ab initio molecular dynamics simulations in order to investigate the structural properties and atom dynamics of CH3NH3PbI3 at room temperature. Starting from different initial configurations, we find that a single-crystalline system undergoes a spontaneous ordering process which brings the ions to alternately point towards the center of two out of the six faces of the cubic framework, i.e. towards the 〈100〉 and 〈010〉 directions. This bidirectional ordering gives rise to a preferential distortion of the inorganic lattice on the >a->b plane, shaping the observed tetragonal symmetry of the system. The process requires tens of picoseconds for CH3NH3PbI3 supercells with just eight ions.
机译:CH3NH3PbI3是一种有机-无机杂化材料,具有钙钛矿结构和取决于温度的多态性,其起源尚不清楚。在这里,我们从头进行分子动力学模拟,以研究室温下CH3NH3PbI3的结构性质和原子动力学。从不同的初始配置开始,我们发现单晶系统经历了自发的有序过程,使离子交替指向立方构架的六个面中两个面的中心,即朝向towards100〉和〈010。 〉指示。这种双向排序使> a -> b 平面上的无机晶格发生优先变形,从而形成了系统观察到的四边形对称性。对于只有8个离子的CH3NH3PbI3超级电池,该过程需要数十皮秒的时间。

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