标度系数
材料科学
聚二甲基硅氧烷
热离子发射
肖特基势垒
应变计
压电
光电子学
纳米线
基质(水族馆)
拉伤
图层(电子)
纳米技术
肖特基二极管
复合材料
制作
电子
量子力学
海洋学
医学
替代医学
二极管
病理
地质学
内科学
物理
作者
Jun Zhou,Yudong Gu,Peng Fei,Wenjie Mai,Yifan Gao,Rusen Yang,Gang Bao,Zhong Lin Wang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2008-08-16
卷期号:8 (9): 3035-3040
被引量:762
摘要
Strain sensors based on individual ZnO piezoelectric fine-wires (PFWs; nanowires, microwires) have been fabricated by a simple, reliable, and cost-effective technique. The electromechanical sensor device consists of a single electrically connected PFW that is placed on the outer surface of a flexible polystyrene (PS) substrate and bonded at its two ends. The entire device is fully packaged by a polydimethylsiloxane (PDMS) thin layer. The PFW has Schottky contacts at its two ends but with distinctly different barrier heights. The I−V characteristic is highly sensitive to strain mainly due to the change in Schottky barrier height (SBH), which scales linear with strain. The change in SBH is suggested owing to the strain induced band structure change and piezoelectric effect. The experimental data can be well-described by the thermionic emission−diffusion model. A gauge factor of as high as 1250 has been demonstrated, which is 25% higher than the best gauge factor demonstrated for carbon nanotubes. The strain sensor developed here has applications in strain and stress measurements in cell biology, biomedical sciences, MEMS devices, structure monitoring, and more.
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