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弹性基底上具有波浪形结构的可拉伸铁电纳米带。

Stretchable ferroelectric nanoribbons with wavy configurations on elastomeric substrates.

机构信息

AML, Department of Engineering Mechanics, Tsinghua University, Beijing 100084, China.

出版信息

ACS Nano. 2011 Apr 26;5(4):3326-32. doi: 10.1021/nn200477q. Epub 2011 Mar 23.

Abstract

Applications of ferroelectric ceramics, ranging from components for sensors, memory devices, microelectromechanical systems, and energy convertors, all involve planar and rigid layouts. The brittle nature of such materials and their high-temperature processing requirements limit applications to devices that involve only very small mechanical deformations and narrow classes of substrates. Here, we report a strategy for integrating nanoribbons of one of the most widely used ferroelectric ceramics, lead zirconate titanate, in "wavy" geometries, on soft, elastomeric supports to achieve reversible, linear elastic responses to large strain deformations (i.e., stretchable properties), without any loss in ferroelectric or piezoelectric properties. Theoretical and computational analysis of the mechanics account for these characteristics and also show that the amplitudes of the waves can be continuously tuned with an applied electric field, to achieve a vertical (normal) displacement range that is near 1000 times larger than is possible in conventional planar layouts. The results suggest new design and application possibilities in piezoelectric devices.

摘要

铁电陶瓷的应用,从传感器组件、存储器件、微机电系统和能量转换器等方面,都涉及到平面和刚性的设计。这些材料的脆性性质及其高温处理要求限制了它们的应用,只能用于涉及非常小机械变形和狭窄基底类型的器件。在这里,我们报告了一种策略,即将最广泛使用的铁电陶瓷之一,锆钛酸铅的纳米带集成到软弹性体支撑上的“波浪形”结构中,以实现对大应变变形(即可拉伸性)的可逆线性弹性响应,而不会失去铁电或压电性能。对力学的理论和计算分析解释了这些特性,并且还表明可以通过施加电场连续调节波的幅度,以实现比传统平面设计大近 1000 倍的垂直(法向)位移范围。这些结果表明了在压电器件中的新设计和应用可能性。

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