压阻效应
材料科学
织物
可穿戴计算机
可穿戴技术
数码产品
纳米技术
灵敏度(控制系统)
制作
光电子学
计算机科学
复合材料
电气工程
电子工程
嵌入式系统
医学
替代医学
病理
工程类
作者
Zhiqi Zhao,Qiujin Li,Yu Dong,Jixian Gong,Zheng Li,Jianfei Zhang
标识
DOI:10.1021/acsami.2c01729
摘要
Textile-based flexible electronic devices have attracted tremendous attention in wearable sensors due to their excellent skin affinity and conformability. However, the washing process of such devices may damage the electronic components. Here, a textile-based piezoresistive sensor with ultrahigh sensitivity was fabricated through the layered integration of gold nanowire (AuNW)-impregnated cotton fabric and silver ink screen-printed nylon fabric electrodes, sealing with Parafilm. The prepared piezoresistive sensing patch exhibits outstanding performance, including high sensitivity (914.970 kPa –1, <100 Pa), a fast response time (load: 38 ms, recovery: 34 ms), and a low detection limit (0.49 Pa). More importantly, it can maintain a stable signal output even after 30 000 s of loading–unloading cycles. Furthermore, this sensing patch can efficiently detect breathing, pulse, heart rate, and joint movements during the activities. After five cycles of mechanical washing, the piezoresistive performance keeps 90.3%, demonstrating the high feasibility of this sensor in practical applications. This sensor has a simple fabrication, with good fatigue resistance and durability due to its all-fabric core element. It provides a strategy to address the machine-washing issues in textile electronics. This washable textile sensor is expected to show significant potential in future applications of health monitoring, human–machine interfaces, and artificial skin.
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