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A novel combination of graphene and silver nanowires for entirely stretchable and ultrasensitive strain sensors: sandwich-based sensing films

机译:石墨烯和银纳米线的新型组合,用于完全拉伸和超声菌株传感器:夹层的传感薄膜

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A great deal of engineering effort is focused on developing stretchable strain sensors for human motion monitoring and wearable devices. The ultrasensitivity and fast response under tiny strain (1%) while maintaining the working range remain the grand challenge. In this work, we propose an entirely stretchable strain sensor based on the sandwich sensing film, which is fabricated by vacuum filtration of silver nanowires (AgNWs)/ graphene/ AgNWs in sequence and the injection of liquid metal as electrodes. The novel sandwich sensing film endows the stretchable strain sensor high sensitivity under tiny strain (Gauge factor = 111.5 at 1%), fast response (<10 ms), relative large working range (0%-35%) with a maximum gauge factor of 1403.7, followed by good linearity, long-term durability, and the recovery property from being overstretched (>100%). The excellent performance is due to the slippage of the inner graphene under tiny strain, whereas the 'sewing' phenomenon of the outer AgNWs under larger strain. The sandwich structure illustrates a better combination of graphene and AgNWs than other hybrid methods, showing great potential in wearable devices and soft robotics.
机译:大量的工程努力专注于开发用于人类运动监控和可穿戴设备的可伸展应变传感器。在微小菌株(1%)下的超敏感度和快速反应,同时保持工作范围仍然是大挑战。在这项工作中,我们提出了一种基于夹层传感膜的完全拉伸的应变传感器,其通过序列中的银纳米线(AgNWS)/石墨烯/ AgNW的真空过滤而制造,并将液态金属作为电极注入液态金属。新型夹心传感膜在微小的菌株下赋予拉伸应变传感器高灵敏度(仪表因子= 111.5,1%),快速响应(<10ms),相对较大的工作范围(0%-35%),具有最大规格因子1403.7,其次是良好的线性,长期耐久性以及恢复性能被过度推动(> 100%)。优异的性能是由于内石墨烯下的微小菌株的滑动,而在较大菌株下的外部agnws的“缝制”现象。夹层结构说明了石墨烯和AgNW的良好组合而不是其他混合方法,显示出可穿戴装置和软机器人的巨大潜力。

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