Vo Tan Thong, Lee Hyeon-Jong, Kim Sang-Yun, Suk Ji Won
School of Mechanical Engineering, Sungkyunkwan University, Suwon, Gyeonggi-do 16419, Korea.
SKKU Advanced Institute of Nanotechnology (SAINT), Sungkyunkwan University, Suwon, Gyeonggi-do 16419, Korea.
Nanomaterials (Basel). 2020 Oct 19;10(10):2063. doi: 10.3390/nano10102063.
Embedding conductive nanomaterials into elastomeric polymer matrices is one of the most promising approaches for fabricating stretchable strain sensors capable of monitoring large mechanical movements or deformation through the detection of resistance changes. Here, hybrid fillers comprising graphene and silver nanowires (AgNWs) are incorporated into extremely stretchable spandex to fabricate strain sensors. Composites containing only graphene and those containing the graphene/AgNW hybrid fillers are systematically investigated by evaluating their electrical and mechanical properties. The synergistic effect between graphene and AgNWs enable the strain sensors based on the composites to experience a large strain range of up to 120%, and low hysteresis with a high gauge factor of 150.3 at a strain of 120%. These reliable strain sensors are utilized for monitoring human motions such as heartbeats and body movements. The findings of this study indicate the significant applicability of graphene/AgNW/spandex composites in future applications that demand high-performance stretchable strain sensors.
将导电纳米材料嵌入弹性聚合物基体是制造可拉伸应变传感器最有前景的方法之一,这种传感器能够通过检测电阻变化来监测大的机械运动或变形。在此,将包含石墨烯和银纳米线(AgNWs)的混合填料掺入极具拉伸性的氨纶中以制造应变传感器。通过评估其电学和力学性能,系统地研究了仅含石墨烯的复合材料以及含石墨烯/AgNW混合填料的复合材料。石墨烯和AgNWs之间的协同效应使基于这些复合材料的应变传感器能够承受高达120%的大应变范围,并且在120%应变下具有低滞后性和150.3的高应变系数。这些可靠的应变传感器用于监测人体运动,如心跳和身体动作。本研究结果表明,石墨烯/AgNW/氨纶复合材料在未来对高性能可拉伸应变传感器有需求的应用中具有显著的适用性。