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Probing the Nanodomain Origin and Phase Transition Mechanisms in (Un)Poled PMN-PT Single Crystals and Textured Ceramics

机译:探索(非)极化PMN-PT单晶和纹理陶瓷中的纳米域起源和相变机理

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摘要

Outstanding electrical properties of solids are often due to the composition heterogeneity and/or the competition between two or more sublattices. This is true for superionic and superprotonic conductors and supraconductors, as well as for many ferroelectric materials. As in PLZT ferroelectric materials, the exceptional ferro- and piezoelectric properties of the PMN-PT ((1−x)PbMg1/3Nb2/3O3−xPbTiO3) solid solutions arise from the coexistence of different symmetries with long and short scales in the morphotropic phase boundary (MPB) region. This complex physical behavior requires the use of experimental techniques able to probe the local structure at the nanoregion scale. Since both Raman signature and thermal expansion behavior depend on the chemical bond anharmonicity, these techniques are very efficient to detect and then to analyze the subtitle structural modifications with an efficiency comparable to neutron scattering. Using the example of poled (field cooling or room temperature) and unpoled PMN-PT single crystal and textured ceramic, we show how the competition between the different sublattices with competing degrees of freedom, namely the Pb-Pb dominated by the Coulombian interactions and those built of covalent bonded entities (NbO6 and TiO6), determine the short range arrangement and the outstanding ferro- and piezoelectric properties.
机译:固体的出色电性能通常归因于组成异质性和/或两个或多个亚晶格之间的竞争。对于超离子和超质子导体和超导体,以及许多铁电材料,都是如此。像PLZT铁电材料一样,PMN-PT((1-x)PbMg1 / 3Nb2 / 3O3-xPbTiO3)固溶体的非凡的铁电和压电特性是由于其在变质相中长短尺度的不同对称性共存而产生的边界(MPB)区域。这种复杂的物理行为要求使用能够探测纳米区域尺度上的局部结构的实验技术。由于拉曼特征和热膨胀行为均取决于化学键的非谐性,因此这些技术非常有效地检测和分析字幕结构修饰,其效率可媲美中子散射。以极化(现场冷却或室温)和非极化PMN-PT单晶和纹理陶瓷为例,我们展示了具有竞争自由度的不同亚晶格之间的竞争,即以库仑相互作用为主的Pb-Pb和那些由共价键合实体(NbO6和TiO6)构成,可确定短程排列以及出色的铁和压电性能。

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