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Ferroelectrics under the Synchrotron Light: A Review

机译:同步光下的铁电学:一个综述

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摘要

Currently, an intensive search for high-performance lead-free ferroelectric materials is taking place. ABO3 perovskites (A = Ba, Bi, Ca, K and Na; B = Fe, Nb, Ti, and Zr) appear as promising candidates. Understanding the structure–function relationship is mandatory, and, in this field, the roles of long- and short-range crystal orders and interactions are decisive. In this review, recent advances in the global and local characterization of ferroelectric materials by synchrotron light diffraction, scattering and absorption are analyzed. Single- and poly-crystal synchrotron diffraction studies allow high-resolution investigations regarding the long-range average position of ions and subtle global symmetry break-downs. Ferroelectric materials, under the action of electric fields, undergo crystal symmetry, crystallite/domain orientation distribution and strain condition transformations. Methodological aspects of monitoring these processes are discussed. Two-dimensional diffraction clarify larger scale ordering: polycrystal texture is measured from the intensities distribution along the Debye rings. Local order is investigated by diffuse scattering (DS) and X-ray absorption fine structure (XAFS) experiments. DS provides information about thermal, chemical and displacive low-dimensional disorders. XAFS investigation of ferroelectrics reveals local B-cation off-centering and oxidation state. This technique has the advantage of being element-selective. Representative reports of the mentioned studies are described.
机译:当前,正在对高性能无铅铁电材料进行深入研究。 ABO3钙钛矿(A = Ba,Bi,Ca,K和Na; B = Fe,Nb,Ti和Zr)似乎是有前途的候选物。了解结构与功能之间的关系是必不可少的,在这一领域,长程和短程晶序和相互作用的作用至关重要。在这篇综述中,分析了通过同步加速器光衍射,散射和吸收对铁电材料进行整体和局部表征的最新进展。单晶和多晶同步加速器衍射研究允许对离子的远距离平均位置和细微的全局对称分解进行高分辨率研究。铁电材料在电场作用下经历晶体对称性,微晶/畴取向分布和应变条件转变。讨论了监视这些过程的方法论方面。二维衍射阐明了更大的有序性:多晶织构是根据沿德拜环的强度分布测量的。通过扩散散射(DS)和X射线吸收精细结构(XAFS)实验研究了局部顺序。 DS提供有关热,化学和置换性低维度疾病的信息。 XAFS对铁电材料的研究揭示了局部B阳离子偏心和氧化态。该技术的优点是可以选择元素。描述了上述研究的代表性报告​​。

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