材料科学
标度系数
热塑性聚氨酯
制作
复合材料
压力传感器
压阻效应
多孔性
造型(装饰)
导电体
复合数
压缩成型
纳米技术
机械工程
弹性体
病理
替代医学
工程类
医学
模具
作者
Zhen Sang,Kai Ke,Ica Manas‐Zloczower
出处
期刊:Small
[Wiley]
日期:2019-10-03
卷期号:15 (45)
被引量:116
标识
DOI:10.1002/smll.201903487
摘要
Abstract Flexible and highly sensitive pressure sensors have versatile biomedical engineering applications for disease diagnosis and healthcare. The fabrication of such sensors based on porous structure composites usually requires complex, costly, and nonenvironmentally friendly procedures. As such, it is highly desired to develop facile, economical, and environment‐friendly fabrication strategies for highly sensitive lightweight pressure sensors. Herein, a novel design strategy is reported to fabricate porous composite pressure sensors via a simple heat molding of conductive fillers and thermoplastic polyurethane (TPU) powders together with commercially available popcorn salts followed by water‐assisted salt removal. The obtained TPU/carbon nanostructure (CNS) foam sensors have a linear resistance response up to 60% compressive strain with a gauge factor ( G F ) of 1.5 and show reversible and reproducible piezoresistive properties due to the robust electrically conductive pathways formed on the foam struts. Such foam sensors can be potentially utilized for guiding squatting exercises and respiration rate monitoring in daily physical training.
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