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首页> 外文期刊>Angewandte Chemie >An Unusual Phase Transition Driven by Vibrational Entropy Changes in a Hybrid Organic-Inorganic Perovskite
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An Unusual Phase Transition Driven by Vibrational Entropy Changes in a Hybrid Organic-Inorganic Perovskite

机译:一种不寻常的相位过渡,通过振动熵变化在杂交有机 - 无机钙钛矿中变化

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摘要

The driving forces for the phase transitions of ABX(3) hybrid organic-inorganic perovskites have been limited to the octahedral tilting, order-disorder, and displacement. Now, a complex structural phase transition has been explored in a HOIP, [CH3NH3][Mn(N-3)(3)], based on structural characterizations and abinitio lattice dynamics calculations. This unusual first-order phase transition between two ordered phases at about 265K is primarily driven by changes in the collective atomic vibrations of the whole lattice, along with concurrent molecular displacements and an unusual octahedral tilting. A significant entropy difference (4.35JK(-1)mol(-1)) is observed between the low- and high-temperature structures induced by such atomic vibrations, which plays a main role in driving the transition. This finding offers an alternative pathway for designing new ferroic phase transitions and related physical properties in HOIPs and other hybrid crystals.
机译:ABX(3)杂交有机 - 无机钙酯的相变的驱动力仅限于八面体倾斜,秩序和位移。 现在,基于结构表征和亚渊晶片动力学计算,在Hoip,[CH3NH3] [Mn(N-3)(3)]中探讨了复杂的结构相转变。 在大约265k的两个有序相之间的这种不寻常的一阶相转变主要由整个格子的集体原子振动的变化驱动,以及同时分子位移和不寻常的八面体倾斜倾斜。 在这种原子振动引起的低温和高温结构之间观察到显着的熵差(4.35JK(-1)摩尔(-1)),这在驱动过渡时发挥着主要作用。 该发现提供了一种替代途径,用于设计河端和其他混合晶体中的新的铁相转变和相关的物理性质。

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