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Effects of surface tension on the size-dependent ferroelectric characteristics of free-standing BaTiO3 nano-thin films

机译:表面张力对自支撑BaTiO3纳米薄膜尺寸依赖性铁电特性的影响

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摘要

Intrinsic surface tension of nanoscale ferroelectric thin film tends to induce tensile stress in its surface layer, whereas the other portion of the film is subjected to compression to maintain mechanical balance. A continuum-based phase-field model accounting for such surface effect has been set up to investigate the evolution of domain structure and thickness-dependent ferroelectric properties of free-standing BaTiO 3 nano-thin films. It was observed that both remnant polarization and coercive field decrease with a decrease of film thickness and increase of surface tension, and that, for film thickness ranging from 10-20 nm, both properties decreased sharply at the surface strain 2-3ε 0 (ε 0 being the spontaneous strain). Further decrease in film thickness or increase in surface tension could result in loss of ferroelectricity. Such a critical state for the ferroelectric-to-paraelectric transition has also been established for the range of film thickness 4-20 nm. © 2011 American Institute of Physics.
机译:纳米级铁电薄膜的固有表面张力趋于在其表面层中引起拉伸应力,而对薄膜的其他部分进行压缩以保持机械平衡。建立了一个基于连续体的考虑这种表面效应的相场模型,以研究独立的BaTiO 3纳米薄膜的畴结构和厚度相关的铁电性能的演变。观察到残余极化和矫顽场均随膜厚的减小和表面张力的增加而减小,并且对于膜厚为10-20 nm的膜,两种特性在表面应变2-3ε0(ε 0是自发应变)。膜厚度的进一步减小或表面张力的增加可能导致铁电损失。对于铁电-顺电转变的这种临界状态也已经针对4-20nm的膜厚度范围建立。 ©2011美国物理研究所。

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