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Review on Conductive Polymer/CNTs Nanocomposites Based Flexible and Stretchable Strain and Pressure Sensors

机译:基于柔性伸缩应变和压力传感器的导电聚合物/ CNT纳米复合材料综述

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摘要

In the last decade, significant developments of flexible and stretchable force sensors have been witnessed in order to satisfy the demand of several applications in robotic, prosthetics, wearables and structural health monitoring bringing decisive advantages due to their manifold customizability, easy integration and outstanding performance in terms of sensor properties and low-cost realization. In this paper, we review current advances in this field with a special focus on polymer/carbon nanotubes (CNTs) based sensors. Based on the electrical properties of polymer/CNTs nanocomposite, we explain underlying principles for pressure and strain sensors. We highlight the influence of the manufacturing processes on the achieved sensing properties and the manifold possibilities to realize sensors using different shapes, dimensions and measurement procedures. After an intensive review of the realized sensor performances in terms of sensitivity, stretchability, stability and durability, we describe perspectives and provide novel trends for future developments in this intriguing field.
机译:在过去的十年中,目前,为了满足机器人,假肢,可穿戴性和结构健康监测的若干应用的需求,可满足柔性和可拉伸的力传感器的需求,这是由于其歧管定制,易于集成和出色的性能传感器性能和低成本实现。在本文中,我们审查了该领域的当前进步,特别关注了基于聚合物/碳纳米管(CNT)的传感器。基于聚合物/ CNT纳米复合材料的电性能,解释了压力和应变传感器的基础原理。我们突出了制造过程对使用不同形状,尺寸和测量程序实现传感器的歧义性能和歧管可能性的影响。在灵敏度,可拉伸性,稳定性和耐用性方面,在对实现传感器性能进行密集审查后,我们描述了这种迷人领域未来发展的新趋势。

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