Pan Shirui, Pei Zhen, Jing Zhu, Song Jianqiao, Zhang Wendong, Zhang Qiang, Sang Shengbo
MicroNano System Research Center, College of Information and Computer & Key Laboratory of Advanced Transducers and Intelligent Control System of Ministry of Education and Shanxi Province, Taiyuan University of Technology Taiyuan 030024 China
RSC Adv. 2020 Mar 18;10(19):11225-11232. doi: 10.1039/d0ra00327a. eCollection 2020 Mar 16.
Recently, highly stretchable strain sensors have attracted considerable attention. Identifying alternatives to sensitive unit materials and flexible substrates is critical in the fabrication of sensors. Herein, a trinary hybrid carbon material consisting of carbon nanotubes (CNTs), graphene, and fullerene was chosen due to its dense interconnections and robust mechanism. Additionally, the cost-effective fabrication of styrene ethylene butylene styrene (SEBS) provides a platform for the strong adhesion of substrates, which contributes to the strong interaction between the substrates and the sensitive unit materials. Furthermore, the intrinsically high elasticity of SEBS allows the sensors to endure large stretching ranges. Owing to the above-mentioned merits, the fabricated sensor based on CNT/graphene/fullerene-SEBS has a high conductivity of 5.179 S m, a moderate gauge factor (GF) of 15, an optimum stretching range of 203%, a linearity of 136% ( = 0.998), and adaptive-rate repeatability, which reveals its potential in the fields of human motion monitoring and scalable applications.
近年来,高拉伸应变传感器备受关注。在传感器制造中,寻找敏感单元材料和柔性基板的替代材料至关重要。在此,选择了由碳纳米管(CNT)、石墨烯和富勒烯组成的三元混合碳材料,因其具有密集的互连结构和强大的机制。此外,苯乙烯 - 乙烯 - 丁烯 - 苯乙烯(SEBS)的低成本制造为基板的强附着力提供了一个平台,这有助于基板与敏感单元材料之间的强相互作用。此外,SEBS固有的高弹性使传感器能够承受较大的拉伸范围。由于上述优点,基于CNT/石墨烯/富勒烯 - SEBS制造的传感器具有5.179 S m的高电导率、15的适度应变系数(GF)、203%的最佳拉伸范围、136%的线性度(R² = 0.998)和自适应速率重复性,这揭示了其在人体运动监测和可扩展应用领域的潜力。