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用于人体呼吸检测的具有网状微裂纹的可拉伸导电聚吡咯/聚氨酯(PPy/PU)应变传感器。

Stretchable conductive polypyrrole/polyurethane (PPy/PU) strain sensor with netlike microcracks for human breath detection.

作者信息

Li Mufang, Li Haiying, Zhong Weibing, Zhao Qinghua, Wang Dong

机构信息

College of Materials Science and Engineering, Wuhan Textile University , Wuhan, 430200, China.

出版信息

ACS Appl Mater Interfaces. 2014 Jan 22;6(2):1313-9. doi: 10.1021/am4053305. Epub 2014 Jan 6.

Abstract

The development of wearable electronics that can monitor human physiological information demands specially structured materials with excellent stretchability and electrical conductivity. In this study, a new stretchable conductive polypyrrole/polyurethane (PPy/PU) elastomer was designed and prepared by surface diffusion and in situ polymerization of PPy inside and on porous PU substrates. The structures allowed the formation of netlike microcracks under stretching. The netlike microcrack structures make possible the reversible changes in the electrical resistance of PPy/PU elastomers under stretching and releasing cycles. The variations in morphology and chemical structures, stretchability, and conductivity as well as the sensitivity of resistance change under stretching cycles were investigated. The mechanism of reversible conductivity of the PPy/PU elastomer was proposed. This property was then used to construct a waistband-like human breath detector. The results demonstrated its potential as a strain sensor for human health care applications by showing reversible resistance changes in the repeated stretching and contracting motion when human breathes in and out.

摘要

能够监测人体生理信息的可穿戴电子产品的发展需要具有出色拉伸性和导电性的特殊结构材料。在本研究中,通过在多孔聚氨酯(PU)基材内部和表面进行聚吡咯(PPy)的表面扩散和原位聚合,设计并制备了一种新型的可拉伸导电聚吡咯/聚氨酯(PPy/PU)弹性体。这种结构使得在拉伸时形成网状微裂纹。网状微裂纹结构使得PPy/PU弹性体在拉伸和释放循环下电阻能够发生可逆变化。研究了其形态和化学结构的变化、拉伸性、导电性以及在拉伸循环下电阻变化的灵敏度。提出了PPy/PU弹性体可逆导电性的机制。然后利用这一特性构建了一种腰带式人体呼吸探测器。结果表明,当人吸气和呼气时,该探测器在重复的拉伸和收缩运动中呈现可逆的电阻变化,证明了其作为人体健康护理应用应变传感器的潜力。

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