首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >An ultrahighly sensitive and repeatable flexible pressure sensor based on PVDF/PU/MWCNT hierarchical framework-structured aerogels for monitoring human activities
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An ultrahighly sensitive and repeatable flexible pressure sensor based on PVDF/PU/MWCNT hierarchical framework-structured aerogels for monitoring human activities

机译:基于PVDF / PU / MWCNT层级框架结构气凝胶的超高敏感和可重复的柔性压力传感器,用于监测人类活动

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Flexible piezoresistive sensors with high sensitivity and repeatability are highly desirable for monitoring human activity and human-machine interactions. However, it is still a great challenge to fabricate high-performance sensors due to the limits of multifunctional sensing platforms. In this work, hierarchical framework-structured PVDF/PU/MWCNT (PPM) aerogels fabricated by a facile thermo-assembly method were suggested as sensitive sensing platform to detect pressure and strain. The pressure-sensing platform based on optimized PPM aerogels exhibited high sensitivity of 62.4 kPa(-1) and fast response of 35 ms, which enabled the detection of minute static pressure of 3 Pa. The sensing platform was also able to detect wide-range compression from 0.5% to 90% and dynamic piezoresistive response behaviour from 1 Hz to 3 kHz, showing excellent repeatability over 50000 compression cycles and ultrahigh strain sensitivity of 156.4, which was the highest reported gauge factor. Moreover, the sensing platform with ultrahigh sensitivity and excellent repeatability enabled the monitoring of human activities, human health, human-machine interactions and non-contact actions such as music intensity. The facile fabrication and versatile capabilities of the sensing platform make it a promising candidate for wearable sensors.
机译:具有高灵敏度和可重复性的柔性压阻传感器对于监测人类活动和人机相互作用非常希望。然而,由于多功能传感平台的限制,制造高性能传感器仍然是一个很大的挑战。在这项工作中,由容易热组装方法制造的分层框架结构PVDF / PU / MWCNT(PPM)气凝胶被建议为敏感的传感平台,以检测压力和应变。基于优化的PPM Aerogels的压力传感平台表现出62.4kPa(-1)的高灵敏度,35 ms的快速响应,使得检测为3 pa的微小静压。传感平台也能够检测到广泛从1 Hz至3 kHz的压缩从0.5%到90%的动态压阻响应行为,显示出优异的重复性超过50000个压缩循环和156.4的超高菌株敏感性,这是最高报告的规格因子。此外,具有超高敏感性和优异的重复性的传感平台使得监测人类活动,人类健康,人机相互作用和非接触动作,如音乐强度。感应平台的容易制造和多功能能力使其成为可穿戴传感器的有希望的候选者。

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