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用于纳米尺度铁电系统中畴模式控制的电荷筛选策略。

Charge screening strategy for domain pattern control in nano-scale ferroelectric systems.

机构信息

Department of Materials, Physics and Energy Engineering, Nagoya University, Nagoya, 464-8603, Japan.

PRESTO, Japan Science and Technology Agency, Kawaguchi, 332-0012, Japan.

出版信息

Sci Rep. 2017 Jul 12;7(1):5236. doi: 10.1038/s41598-017-05475-x.

Abstract

Strain engineering is a widespread strategy used to enhance performance of devices based on semiconductor thin films. In ferroelectrics strain engineering is used to control the domain pattern: When an epitaxial film is biaxially compressed, e.g. due to lattice mismatch with the substrate, the film displays out-of-plane, often strongly enhanced polarization, while stretching the film on the substrate results in in-plane polarization. However, this strategy is of a limited applicability in nanorods because of the small rod/substrate contact area. Here we demonstrate another strategy, in which the polar axis direction is controlled by charge screening. When charge screening is maintained by bottom and top metallization, the nanorods display an almost pure c-domain configuration (polarization perpendicular to the substrate); when the sidewalls of the nanorods are metallized too, a-domain formation prevails (polarization parallel to the substrate). Simulations of the depolarization fields under various boundary conditions support the experimental observations. The employed approach can be expanded to other low-dimensional nano-scale ferroelectric systems.

摘要

应变工程是一种广泛应用的策略,用于提高基于半导体薄膜的器件性能。在铁电体中,应变工程用于控制畴模式:当外延薄膜受到双轴压缩时,例如由于与衬底的晶格失配,薄膜会显示出平面外、通常强烈增强的极化,而在衬底上拉伸薄膜则会导致平面内极化。然而,由于纳米棒的棒/衬底接触面积较小,这种策略的适用性有限。在这里,我们展示了另一种策略,其中通过电荷屏蔽来控制极轴方向。当通过底部和顶部金属化来保持电荷屏蔽时,纳米棒显示出几乎纯 c 畴配置(极化垂直于衬底);当纳米棒的侧壁也被金属化时,a 畴形成占主导地位(极化平行于衬底)。在各种边界条件下对去极化场的模拟支持了实验观察。所采用的方法可以扩展到其他低维纳米尺度铁电系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/845f/5507871/a423d694794b/41598_2017_5475_Fig1_HTML.jpg

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