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铁电三色 PbTiO3/SrTiO3/PbZr0.2Ti0.8O3 超晶格中的极化旋转。

Polarization Rotation in Ferroelectric Tricolor PbTiO3/SrTiO3/PbZr0.2Ti0.8O3 Superlattices.

机构信息

Laboratoire de Physique de la Matière Condensée, EA 2081, Université de Picardie Jules Verne , 80039 Amiens, France.

Laboratoire Structures, Propriétés et Modélisation des Solides, CentraleSupélec, CNRS-UMR 8580, Université Paris-Saclay , 92295 Cedex Châtenay-Malabry, France.

出版信息

ACS Appl Mater Interfaces. 2015 Sep 16;7(36):19906-13. doi: 10.1021/acsami.5b03456. Epub 2015 Sep 4.

Abstract

In ferroelectric thin films, controlling the orientation of the polarization is a key element to controlling their physical properties. We use laboratory and synchrotron X-ray diffraction to investigate ferroelectric bicolor PbTiO3/PbZr0.2Ti0.8O3 and tricolor PbTiO3/SrTiO3/PbZr0.2Ti0.8O3 superlattices and to study the role of the SrTiO3 layers on the domain structure. In the tricolor superlattices, we demonstrate the existence of 180° ferroelectric stripe nanodomains, induced by the depolarization field produced by the SrTiO3 layers. Each ultrathin SrTiO3 layer modifies the electrostatic boundary conditions between the ferroelectric layers compared to the corresponding bicolor structures, leading to the suppression of the a/c polydomain states. Combined with the electrostatic effect, the tensile strain induced by PbZr0.2Ti0.8O3 in the PbTiO3 layers leads to polarization rotation in the system as evidenced by grazing incidence X-ray measurements. This polarization rotation is associated with the monoclinic Mc phase as revealed by the splitting of the (HHL) and (H0L) reciprocal lattice points. This work demonstrates that the tricolor paraelectric/ferroelectric superlattices constitute a tunable system to investigate the concomitant effects of strains and depolarizing fields. Our studies provide a pathway to stabilize a monoclinic symmetry in ferroelectric layers, which is of particular interest for the enhancement of the piezoelectric properties.

摘要

在铁电薄膜中,控制极化方向是控制其物理性质的关键因素。我们使用实验室和同步加速器 X 射线衍射来研究铁电双色 PbTiO3/PbZr0.2Ti0.8O3 和三色 PbTiO3/SrTiO3/PbZr0.2Ti0.8O3 超晶格,并研究 SrTiO3 层对畴结构的作用。在三色超晶格中,我们证明了存在由 SrTiO3 层产生的去极化场诱导的 180°铁电条纹纳米畴。与相应的双色结构相比,每个超薄 SrTiO3 层都会改变铁电层之间的静电边界条件,导致 a/c 多畴态的抑制。结合静电效应,PbZr0.2Ti0.8O3 在 PbTiO3 层中产生的拉伸应变导致系统中的极化旋转,这一点可以通过掠入射 X 射线测量得到证实。这种极化旋转与 Mc 相有关,这一点可以通过(HHL)和(H0L)倒易晶格点的分裂得到证明。这项工作表明,三色顺电/铁电超晶格构成了一个可调谐系统,可以研究应变和去极化场的共同作用。我们的研究为稳定铁电层中的单斜对称性提供了一种途径,这对于增强压电性能特别有意义。

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