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On the benefit of aberration-corrected HAADF-STEM for strain determination and its application to tailoring ferroelectric domain patterns

机译:利用像差校正的HAADF-STEM进行应变确定的好处及其在调整铁电畴图案中的应用

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摘要

Revealing strains on the unit-cell level is essential for understanding the particular performance of materials. Large-scale strain variations with a unit-cell resolution are important for studying ferroelectric materials since the spontaneous polarizations of such materials are strongly coupled with strains. Aberration-corrected high-angle-annular-dark-field scanning transmission electron microscopy (AC-HAADF-STEM) is not so sensitive to the sample thickness and therefore thickness gradients. Consequently it is extremely useful for large-scale strain determination, which can be readily extracted by geometrical phase analysis (GPA). Such a combination has various advantages: it is straightforward, accurate on the unit-cell scale, relatively insensitive to crystal orientation and therefore helpful for large-scale. We take a tetragonal ferroelectric PbTiO3 film as an example in which large-scale strains are determined. Furthermore, based on the specific relationship between lattice rotation and spontaneous polarization (P-s) at 180 degrees domain-walls, the Ps directions are identified, which makes the investigation of ferroelectric domain structures accurate and straightforward. This method is proposed to be suitable for investigating strain-related phenomena in other ferroelectric materials. (C) 2015 Elsevier BY. All rights reserved.
机译:揭示晶胞水平上的应变对于理解材料的特定性能至关重要。具有单位晶格分辨率的大规模应变变化对于研究铁电材料非常重要,因为此类材料的自发极化与应变紧密相关。像差校正的高角度环形暗场扫描透射电子显微镜(AC-HAADF-STEM)对样品厚度并因此对厚度梯度不太敏感。因此,它对于大规模应变确定非常有用,可以通过几何相位分析(GPA)轻松提取。这样的组合具有多种优点:它简单,单位晶格上准确,对晶体取向相对不敏感,因此有助于大规模生产。我们以四方铁电体PbTiO3薄膜为例,其中确定了大应变。此外,根据在180度畴壁处晶格旋转与自发极化(P-s)之间的特定关系,可以确定Ps方向,这使铁电畴结构的研究准确而直接。提出该方法适用于研究其他铁电材料中的应变相关现象。 (C)2015 Elsevier BY。版权所有。

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