化学
单独一对
单斜晶系
铁电性
电介质
铋
极地的
钙钛矿(结构)
极化率
偶极子
结晶学
相变
极化(电化学)
空间组
凝聚态物理
晶体结构
X射线晶体学
光学
衍射
物理化学
分子
材料科学
物理
有机化学
光电子学
天文
作者
Machteld E. Kamminga,Alessandro Stroppa,Silvia Picozzi,Mikhail Chislov,И. А. Зверева,Jacob Baas,Auke Meetsma,Graeme R. Blake,T. T. M. Palstra
标识
DOI:10.1021/acs.inorgchem.6b01699
摘要
High-quality single crystals of perovskite-like (CH3NH3)3Bi2I9 hybrids have been synthesized, using a layered-solution crystal-growth technique. The large dielectric constant is strongly affected by the polar ordering of its constituents. Progressive dipolar ordering of the methylammonium cation upon cooling below 300 K gradually converts the hexagonal structure (space group P63/mmc) into a monoclinic phase (C2/c) at 160 K. A well-pronounced, ferrielectric phase transition at 143 K is governed by in-plane ordering of the bismuth lone pair that breaks inversion symmetry and results in a polar phase (space group P21). The dielectric constant is markedly higher in the C2/c phase above this transition. Here, the bismuth lone pair is disordered in-plane, allowing the polarizability to be substantially enhanced. Density functional theory calculations estimate a large ferroelectric polarization of 7.94 μC/cm2 along the polar axis in the P21 phase. The calculated polarization has almost equal contributions of the methylammonium and Bi3+ lone pair, which are fairly decoupled.
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