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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >A highly flexible tactile sensor with an interlocked truncated sawtooth structure based on stretchable graphene/silver/silicone rubber composites
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A highly flexible tactile sensor with an interlocked truncated sawtooth structure based on stretchable graphene/silver/silicone rubber composites

机译:具有基于可拉伸石墨烯/硅橡胶复合材料的具有互锁截断锯齿结构的高度灵活的触觉传感器

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摘要

Tactile sensors with high flexibility have attracted great interest due to their significant potential in diverse applications including intelligent robotics, smart prosthetics, human-machine interfaces, and biomonitoring electronic devices. However, it remains a critical challenge to develop tactile sensors with both high sensitivity and flexibility. In this work, we propose a highly flexible tactile sensor with an inter-locked truncated sawtooth structure based on patterned stretchable graphene/silver/silicone rubber composites. Graphene/silicone rubber composites possess an extremely high gauge factor (similar to 13 692) and can serve as a piezoresistive sensing material. Silver/silicone rubber composites have a high conductivity (similar to 200 S cm(-1)) and a low gauge factor (similar to 15) and are used as stretchable electrodes. The interlocked truncated sawtooth structure can transform the mechanical stimuli of the sensor into tensile strains of the graphene composite, enhancing both sensitivity and flexibility. The developed tactile sensor is characterized by a high sensitivity of 0.45 V N-1 (from 0.05-1.5 N) and a low sensitivity of 0.12 V N-1 (from 1.5-2.0 N). Experimental studies have demonstrated that tactile sensors have relatively high reproducibility, fast dynamic response and both mechanical and electrical stability. These superior properties are indicative of their great potential in applications such as intelligent robotics, prosthetics, and wearable devices.
机译:具有高灵活性的触觉传感器由于它们在不同应用中的重要潜力而引起了极大的兴趣,包括智能机器人,智能假肢,人机界面和生物监测电子设备。然而,既具有高灵敏度和灵活性开发触觉传感器仍然是一个关键挑战。在这项工作中,我们提出了一种高度灵活的触觉传感器,其具有基于图案化的可拉伸石墨烯/硅橡胶复合材料的锁定截断的锯齿结构。石墨烯/硅橡胶复合材料具有极高的仪表系数(类似于13 692),可用作压阻式传感材料。银/硅橡胶复合材料具有高导电率(类似于200秒(-1))和低规计(类似于15)并且用作可拉伸电极。互锁截断的锯齿结构可以将传感器的机械刺激变为石墨烯复合材料的拉伸菌株,增强灵敏度和柔韧性。开发的触觉传感器的特征在于0.45V n-1的高灵敏度(0.05-1.5 n),低灵敏度为0.12V n-1(从1.5-2.0 n)。实验研究表明,触觉传感器具有相对高的再现性,动态响应和机械和电稳定性。这些优异的特性指示它们在智能机器人,假肢和可穿戴设备等应用中的巨大潜力。

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