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通过氧分压控制表面补偿实现的超薄 PbTiO3 的平衡极化。

Equilibrium polarization of ultrathin PbTiO3 with surface compensation controlled by oxygen partial pressure.

机构信息

Materials Science Division, Argonne National Laboratory, Argonne, Illinois 60439, USA.

出版信息

Phys Rev Lett. 2011 Oct 28;107(18):187602. doi: 10.1103/PhysRevLett.107.187602. Epub 2011 Oct 25.

Abstract

We present a synchrotron x-ray study of the equilibrium polarization structure of ultrathin PbTiO(3) films on SrRuO(3) electrodes epitaxially grown on SrTiO(3) (001) substrates, as a function of temperature and the external oxygen partial pressure (pO(2)) controlling their surface charge compensation. We find that the ferroelectric Curie temperature (T(C)) varies with pO(2) and has a minimum at the intermediate pO(2), where the polarization below T(C) changes sign. The experiments are in qualitative agreement with a model based on Landau theory that takes into account the interaction of the phase transition with the electrochemical equilibria for charged surface species. The paraelectric phase is stabilized at intermediate pO(2) when the concentrations of surface species are insufficient to compensate either polar orientation.

摘要

我们呈现了一个同步加速器 X 射线研究的结果,研究了外延生长在 SrTiO3(001)衬底上的 SrRuO3 电极上的超薄 PbTiO3 薄膜的平衡极化结构,作为温度和外部氧分压 (pO2) 的函数,控制着它们的表面电荷补偿。我们发现铁电居里温度 (T(C)) 随 pO2 而变化,在中间的 pO2 处有一个最小值,在这个值以下,极化在 T(C)以下改变符号。实验与基于 Landau 理论的模型定性一致,该模型考虑了相变与表面带电物种的电化学平衡之间的相互作用。当中等的 pO2 时,表面物种的浓度不足以补偿任何一个极化方向时,顺电相被稳定下来。

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