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纸质超级电容式机械传感器

Paper-Based Supercapacitive Mechanical Sensors.

作者信息

Zhang Ye, Sezen Serdar, Ahmadi Mahdi, Cheng Xiang, Rajamani Rajesh

机构信息

Department of Mechanical Engineering, University of Minnesota, 111 Church St. SE, Minneapolis, MN, 55455, USA.

Department of Mechanical and Manufacturing Engineering, St. Cloud State University, 720 Fourth Avenue South, Saint Cloud, MN, 56301, USA.

出版信息

Sci Rep. 2018 Nov 2;8(1):16284. doi: 10.1038/s41598-018-34606-1.

Abstract

Paper has been pursued as an interesting substrate material for sensors in applications such as microfluidics, bio-sensing of analytes and printed microelectronics. It offers advantages of being inexpensive, lightweight, environmentally friendly and easy to use. However, currently available paper-based mechanical sensors suffer from inadequate range and accuracy. Here, using the principle of supercapacitive sensing, we fabricate force sensors from paper with ultra-high sensitivity and unprecedented configurability. The high sensitivity comes from the sensitive dependence of a supercapacitor's response on the contact area between a deformable electrolyte and a pair of electrodes. As a key component, we develop highly deformable electrolytes by coating ionic gel on paper substrates which can be cut and shaped into complex three-dimensional geometries. Paper dissolves in the ionic gel after determining the shape of the electrolytes, leaving behind transparent electrolytes with micro-structured fissures responsible for their high deformability. Exploiting this simple paper-based fabrication process, we construct diverse sensors of different configurations that can measure not just force but also its normal and shear components. The new sensors have range and sensitivity several orders of magnitude higher than traditional MEMS capacitive sensors, in spite of their being easily fabricated from paper with no cleanroom facilities.

摘要

纸已被视为一种有趣的基底材料,用于微流体、分析物生物传感和印刷微电子等应用中的传感器。它具有价格低廉、重量轻、环境友好且易于使用的优点。然而,目前可用的纸质机械传感器存在量程和精度不足的问题。在此,我们利用超级电容传感原理,用纸张制造出具有超高灵敏度和前所未有的可配置性的力传感器。高灵敏度源于超级电容器的响应与可变形电解质和一对电极之间接触面积的敏感依赖关系。作为关键组件,我们通过在纸质基底上涂覆离子凝胶来开发高度可变形的电解质,这种电解质可以切割并成型为复杂的三维几何形状。在确定电解质形状后,纸张会溶解在离子凝胶中,留下具有微结构裂缝的透明电解质,这些裂缝使其具有高可变形性。利用这种基于纸张的简单制造工艺,我们构建了各种不同配置的传感器,这些传感器不仅可以测量力,还可以测量力的法向和切向分量。尽管这些新型传感器很容易用纸张制造,无需洁净室设施,但其量程和灵敏度比传统的微机电系统(MEMS)电容式传感器高出几个数量级。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d1a/6214964/46cce47d54dd/41598_2018_34606_Fig1_HTML.jpg

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