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首页> 外文期刊>Nature Communications >An ultra-sensitive resistive pressure sensor based on hollow-sphere microstructure induced elasticity in conducting polymer film
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An ultra-sensitive resistive pressure sensor based on hollow-sphere microstructure induced elasticity in conducting polymer film

机译:基于中空球微结构诱导聚合物薄膜导电性的超灵敏电阻式压力传感器

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摘要

Pressure sensing is an important function of electronic skin devices. The development of pressure sensors that can mimic and surpass the subtle pressure sensing properties of natural skin requires the rational design of materials and devices. Here we present an ultra-sensitive resistive pressure sensor based on an elastic, microstructured conducting polymer thin film. The elastic microstructured film is prepared from a polypyrrole hydrogel using a multiphase reaction that produced a hollow-sphere microstructure that endows polypyrrole with structure-derived elasticity and a low effective elastic modulus. The contact area between the microstructured thin film and the electrodes increases with the application of pressure, enabling the device to detect low pressures with ultra-high sensitivity. Our pressure sensor based on an elastic microstructured thin film enables the detection of pressures of less than 1?Pa and exhibits a short response time, good reproducibility, excellent cycling stability and temperature-stable sensing.
机译:压力感测是电子皮肤设备的重要功能。能够模仿并超越自然皮肤微妙的压力感测性能的压力传感器的开发需要对材料和设备进行合理的设计。在这里,我们介绍了一种基于弹性,微结构化导电聚合物薄膜的超灵敏电阻式压力传感器。弹性微结构化膜是通过使用多相反应由聚吡咯水凝胶制备的,该多相反应产生了空心球微结构,该空心球微结构赋予聚吡咯以结构衍生的弹性和低的有效弹性模量。随着压力的施加,微结构化薄膜与电极之间的接触面积增加,从而使该设备能够以超高灵敏度检测低压。我们基于弹性微结构薄膜的压力传感器能够检测不到1?Pa的压力,并且响应时间短,重现性好,循环稳定性和温度稳定感测能力强。

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