石墨烯
碳纳米管
灵活性(工程)
炭黑
制作
石墨
信号(编程语言)
碳纤维
纳米技术
计算机科学
材料科学
医学
复合材料
天然橡胶
程序设计语言
替代医学
病理
统计
复合数
数学
作者
Siming Li,Xueliang Xiao,Jiayu Hu,Manchen Dong,Yuqi Zhang,Runxin Xu,Xinyi Wang,Jehadul Islam
标识
DOI:10.1021/acsaelm.0c00292
摘要
Flexible strain sensors have attracted much attention due to their good flexibility, high sensitivity, superior repeatability, and great potentials for application in physiological signal detection. Carbon materials, including carbon nanotubes, graphene, carbon black, graphite, and natural-bioderived carbon materials are often used as active materials for the fabrication of flexible strain sensors because of their superior electrical conductivity and flexibility. Among them, carbon nanotubes and graphene can be prepared into flexible sensors in various forms, such as fibers, films, or textiles. Therefore, carbon material flexible sensors used for physiological signal detection have been sufficiently studied. Herein, the sensing mechanism of flexible strain sensors and the recent advances are reviewed. Sensor characteristics and functions of fibers/films with carbon nanotubes, graphene, and other carbon materials are described in terms of materials, preparation, and properties. From the aspect of sensor application, the sensors with different materials in large- and small-amplitude physiological signals are introduced in detail. Eventually, the superiorities and disadvantages of various carbon-based flexible strain sensors are summarized, and the challenges and opportunities of them in the future are also presented.
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