材料科学
石墨烯
可穿戴计算机
应变计
柔性电子器件
拉伤
数码产品
人体运动
光电子学
声学
纳米技术
复合材料
标度系数
计算机科学
电气工程
运动(物理)
制作
医学
替代医学
人工智能
嵌入式系统
病理
工程类
内科学
物理
作者
Weichen Gao,Wei Wu,Chang-Zhou Chen,Hui Zhao,Yang Liu,Qing Li,Chongxing Huang,Guo‐Hua Hu,Shuangfei Wang,Dean Shi,Qunchao Zhang
标识
DOI:10.1021/acsami.1c17565
摘要
A flexible strain sensor is of significant importance in wearable electronics since it can help monitor the physical signals from the human body. Among various strain sensors, the polyurethane (PU)-based ones have received widespread attention owing to their excellent toughness, large working range, and nice gas permeability. However, the hydrophobicity of these sensors is not good enough, which may affect their use life and sensitivity. In this work, a high-performance strain sensor composed of PU, reduced graphene oxide (rGO), polydopamine (PDA), and 1H,1H,2H,2H-perfluorodecane-thiol (PFDT) was designed and prepared. The results revealed that this PU/rGO/PDA/PFDT device possessed good superhydrophobicity with a water contact angle of 153.3°, a wide working strain range of 590%, and an outstanding gauge factor as high as 221 simultaneously. Because of these above advantages, the sensor worked effectively in detecting both subtle and large human movements (such as joint motion, finger motion, and vocal cord vibration) even in a high humidity environment. This strain sensor with high sensitivity, wide working range, and suitable modulus may have great potential in the field of flexible and wearable electronics in the near future.
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