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首页> 外文期刊>Materials Horizons >An intriguing intermediate state as a bridge between antiferroelectric and ferroelectric perovskites
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An intriguing intermediate state as a bridge between antiferroelectric and ferroelectric perovskites

机译:一种有趣的中间状态作为防废料和铁电钙酯之间的桥梁

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摘要

The configuration of electric or magnetic dipoles embedded into a crystal lattice gives rise to the defining physical properties of a functional material. The prevailing antiferroelectric materials have so far been allusively assumed to be in a strict antiparallel electric polarization configuration, although they have shown huge potential applications for use in electronic devices. Herein, we have revealed for the first time the complex crystal structure of an intermediate state between the two conventional antiferroelectric (AFE) and ferroelectric (FE) states in PbZrO3-based perovskites by employing a combination of advanced synchrotron X-ray, neutron and three-dimensional (3D) electron diffraction techniques. We found that the intermediate state displays an intriguing flexible configuration of a sinusoidal wave functional with imbalanced polarization, different to the commonly believed antiparallel and balanced polarization. Such an intermediate state was concluded to act as a bridge between the conventional AFE and FE states. Our observations offer new insight into the AFE state and its transformation into the FE state. Such an intermediate state with a unique polarization configuration is believed to be a common feature that occurs in high-performance AFE perovskite materials.
机译:嵌入晶格中的电气或磁偶极块的构造产生了功能材料的定义物理性质。迄今为止,普遍的防火电极材料被占据了严格的反平行电极化配置,尽管它们已经示出了用于电子设备的巨大潜在应用。在此,我们已经通过采用先进的同步X射线,中子和三个组合,首次揭示了在PBZRO3的钙锌矿中的两个常规排式释放(AFE)和铁电(Fe)和铁电(Fe)态之间的中间状态的复合晶体结构。 -dimensional(3D)电子衍射技术。我们发现中间状态显示了具有不平衡偏振的正弦波功能的有趣灵活配置,与常见的反平行和平衡偏振不同。结束了这种中间状态,以充当传统AFE和Fe州之间的桥梁。我们的观察结果向AFE状态提供了新的洞察力及其转变为FE状态。据信这种具有独特偏振配置的中间状态是在高性能AEF钙钛矿材料中发生的共同特征。

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