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Hydrogen Bonding versus Entropy: Revealing the Underlying Thermodynamics of the Hybrid Organic-Inorganic Perovskite [CH3NH3]PbBr3

机译:氢键与熵:揭示杂交有机 - 无机钙钛矿的底层热力学[CH3NH3] PBBR3

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摘要

The enormous research efforts dedicated to hybrid organic-inorganic perovskites have led to a deep understanding of these materials; however, the role of entropy and its ramifications for the properties of the materials have been only sparsely explored. In this study, we quantify the phase transition mechanism in the hybrid organic-inorganic perovskite [CH3N3]PbBr3 by studying low-energy collective phonon modes using a combination of inelastic neutron scattering and ab initio lattice dynamics. We demonstrate that a delicate interplay among hydrogen bonding interactions, lattice vibrational entropy, and configurational disorder determines the thermodynamics and results in the rich phase evolution of [CH3NH3]PbBr3 as a function of temperature. Our results have important implications for the manipulation of macroscopic properties and provide a blueprint for future studies that will focus on unravelling phase transition mechanisms in hybrid perovskites and related materials such as dense and porous coordination polymers.
机译:致力于杂交有机无机钙培的巨大研究努力导致了对这些材料的深刻理解;然而,熵的作用及其对材料性质的影响只是略探索。在该研究中,我们通过使用无弹性中子散射和AB Initio格动力学的组合研究低能量集体声子模式,通过研究低能量集体声子模式来量化杂交有机 - 无机钙钛矿π的相转变机制。我们证明,氢键相互作用,晶格振动熵和配置障碍之间的微妙相互作用决定了热力学,并导致[CH3NH3] PBBR3的富相进化作为温度的函数。我们的结果对操纵宏观性质具有重要意义,并为未来的研究提供蓝图,这些研究将集中在杂交钙酸盐和相关材料中的解开相变机制和诸如致密和多孔配位聚合物的相关材料。

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