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铁电材料中成核中心空间和能量分布的直接成像。

Direct imaging of the spatial and energy distribution of nucleation centres in ferroelectric materials.

作者信息

Jesse Stephen, Rodriguez Brian J, Choudhury Samrat, Baddorf Arthur P, Vrejoiu Ionela, Hesse Dietrich, Alexe Marin, Eliseev Eugene A, Morozovska Anna N, Zhang Jingxian, Chen Long-Qing, Kalinin Sergei V

机构信息

Materials Science and Technology Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, USA.

出版信息

Nat Mater. 2008 Mar;7(3):209-15. doi: 10.1038/nmat2114. Epub 2008 Feb 3.

Abstract

Macroscopic ferroelectric polarization switching, similar to other first-order phase transitions, is controlled by nucleation centres. Despite 50 years of extensive theoretical and experimental effort, the microstructural origins of the Landauer paradox, that is, the experimentally observed low values of coercive fields in ferroelectrics corresponding to implausibly large nucleation activation energies, are still a mystery. Here, we develop an approach to visualize the nucleation centres controlling polarization switching processes with nanometre resolution, determine their spatial and energy distribution and correlate them to local microstructure. The random-bond and random-field components of the disorder potential are extracted from positive and negative nucleation biases. Observation of enhanced nucleation activity at the 90 composite function domain wall boundaries and intersections combined with phase-field modelling identifies them as a class of nucleation centres that control switching in structural-defect-free materials.

摘要

与其他一级相变类似,宏观铁电极化切换由成核中心控制。尽管经过了50年广泛的理论和实验研究,但朗道尔悖论的微观结构起源仍是一个谜,即在铁电体中实验观察到的矫顽场低值对应着不合理的大的成核活化能。在此,我们开发了一种方法,以纳米分辨率可视化控制极化切换过程的成核中心,确定它们的空间和能量分布,并将它们与局部微观结构相关联。从正、负成核偏置中提取无序势的随机键和随机场分量。在90°复合功能畴壁边界和交叉点处观察到增强的成核活性,并结合相场建模,将它们确定为一类控制无结构缺陷材料中切换的成核中心。

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