Bencan Andreja, Oveisi Emad, Hashemizadeh Sina, Veerapandiyan Vignaswaran K, Hoshina Takuya, Rojac Tadej, Deluca Marco, Drazic Goran, Damjanovic Dragan
Electronic Ceramics Department, Jozef Stefan Institute, Ljubljana, Slovenia.
Interdisciplinary Center for Electron Microscopy, Ecole Polytechnique Fédérale de Lausanne, Lausanne, Switzerland.
Nat Commun. 2021 Jun 9;12(1):3509. doi: 10.1038/s41467-021-23600-3.
The nature of the "forbidden" local- and long-range polar order in nominally non-polar paraelectric phases of ferroelectric materials has been an open question since the discovery of ferroelectricity in oxide perovskites, ABO. A currently considered model suggests locally correlated displacements of B-site atoms along a subset of <111> cubic directions. Such off-site displacements have been confirmed experimentally; however, being essentially dynamic in nature they cannot account for the static nature of the symmetry-forbidden polarization implied by the macroscopic experiments. Here, in an atomically resolved study by aberration-corrected scanning transmission electron microscopy complemented by Raman spectroscopy, we reveal, directly visualize and quantitatively describe static, 2-4 nm large polar nanoclusters in the nominally non-polar cubic phases of (Ba,Sr)TiO and BaTiO. These results have implications on understanding of the atomic-scale structure of disordered materials, the origin of precursor states in ferroelectrics, and may help answering ambiguities on the dynamic-versus-static nature of nano-sized clusters.
自氧化物钙钛矿ABO中发现铁电性以来,铁电材料名义上非极性顺电相中的“禁戒”局域和长程极性有序的本质一直是个悬而未决的问题。目前考虑的一个模型表明,B位原子沿着<111>立方方向的一个子集发生局域相关位移。这种非原位位移已通过实验得到证实;然而,本质上它们是动态的,无法解释宏观实验所暗示的对称性禁戒极化的静态性质。在这里,通过结合拉曼光谱的像差校正扫描透射电子显微镜进行的原子分辨研究,我们直接揭示、可视化并定量描述了(Ba,Sr)TiO和BaTiO名义上非极性立方相中的静态、尺寸为2 - 4纳米的大极性纳米团簇。这些结果对于理解无序材料的原子尺度结构、铁电体中前驱态的起源具有重要意义,并且可能有助于解答关于纳米尺寸团簇动态与静态性质的模糊问题。