材料科学
制作
拉伤
可穿戴计算机
标度系数
织物
可穿戴技术
复合材料
可扩展性
应变计
服装
灵敏度(控制系统)
纤维素
纳米技术
电子工程
工程类
计算机科学
嵌入式系统
病理
考古
内科学
历史
替代医学
数据库
医学
化学工程
作者
Mingchao Zhang,Chunya Wang,Haomin Wang,Muqiang Jian,Xiangyang Hao,Yingying Zhang
标识
DOI:10.1002/adfm.201604795
摘要
Recent years have witnessed the booming development of flexible strain sensors. To date, it is still a great challenge to fabricate strain sensors with both large workable strain range and high sensitivity. Cotton is an abundant supplied natural material composed of cellulose fibers and has been widely used for textiles and clothing. In this work, the fabrication of highly sensitive wearable strain sensors based on commercial plain weave cotton fabric, which is the most popular fabric for clothes, is demonstrated through a low‐cost and scalable process. The strain sensors based on carbonized cotton fabric exhibit fascinating performance, including large workable strain range (>140%), superior sensitivity (gauge factor of 25 in strain of 0%–80% and that of 64 in strain of 80%–140%), inconspicuous drift, and long‐term stability, simultaneously offering advantages of low cost and simplicity in device fabrication and versatility in applications. Notably, the strain sensor can detect a subtle strain of as low as 0.02%. Based on its superior performance, its applications in monitoring both vigorous and subtle human motions are demonstrated, showing its tremendous potential for applications in wearable electronics and intelligent robots.
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