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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Understanding ferroelectricity in layered perovskites: new ideas and insights from theory and experiments
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Understanding ferroelectricity in layered perovskites: new ideas and insights from theory and experiments

机译:了解层状钙钛矿中的铁电:理论和实验的新思想和新见解

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ABO(3) perovskites have fascinated solid-state chemists and physicists for decades because they display a seemingly inexhaustible variety of chemical and physical properties. However, despite the diversity of properties found among perovskites, very few of these materials are ferroelectric, or even polar, in bulk. In this Perspective, we highlight recent theoretical and experimental studies that have shown how a combination of non-polar structural distortions, commonly tilts or rotations of the BO6 octahedra, can give rise to polar structures or ferroelectricity in several families of layered perovskites. We discuss the crystal chemical origin of the polarization in each of these families - which emerges through a so-called 'trilinear coupling' or 'hybrid improper' mechanism - and emphasize areas in which further theoretical and experimental investigation is needed. We also consider how this mechanism may provide a generic route for designing not only new ferroelectrics, but also materials with various other multifunctionalities, such as magnetoelectrics and electric field-controllable metal-insulator transitions.
机译:数十年来,ABO(3)钙钛矿吸引了固态化学家和物理学家,因为它们表现出似乎无穷无尽的化学和物理特性。然而,尽管在钙钛矿中发现了多种特性,但这些材料中很少有铁电性的,甚至是极性的。在此“观点”中,我们重点介绍了最近的理论和实验研究,这些研究表明非极性结构变形(通常为BO6八面体的倾斜或旋转)的组合如何在多层钙钛矿的多个族中产生极性结构或铁电。我们讨论了这些族中每个族的极化的晶体化学起源-通过所谓的“三线性耦合”或“混合不当”机制出现-并强调了需要进一步理论和实验研究的领域。我们还考虑了该机制如何为设计新的铁电体以及具有各种其他多功能性的材料(如磁电体和可控电场的金属-绝缘体过渡)提供一条通用的途径。

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