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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Highly sensitive, stretchable and wearable strain sensors using fragmented conductive cotton fabric
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Highly sensitive, stretchable and wearable strain sensors using fragmented conductive cotton fabric

机译:使用碎片式导电棉织物具有高度敏感,可伸展和可穿戴的应变传感器

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摘要

Recent advancements in stretchable, flexible and wearable strain sensors, based on natural materials, show their interesting potential for use in human motion detection, soft robotics and human–machine interactions. However, a grand challenge still exists: finding an effective strain-sensing mechanism to obtain both high stretchability and high sensitivity through a facile manufacturing technique. In this paper, a simple, environmentally friendly, and scalable process to develop such strain sensors based on cotton fabric, which is an abundant, cost-effective and lightweight natural material, is discussed. An effective coating technique is proposed to achieve highly conductive cotton fabric with the aid of a conductive ink that is a hybrid of graphene nanoplatelets and carbon black particles. The sandwich-structured wearable strain sensors can work within a wide strain range of up to 400%, with an ultrahigh maximum gauge factor of 102?351, caused by the formation of controlled intentional cracks within the fabric after rupture training. The strain sensors show great performance at very low strain levels (less than 2%). Their excellent response in detecting a full range of human movement is also demonstrated.
机译:基于天然材料的可拉伸,柔性和可穿戴应变传感器的最新进展显示了他们在人类运动检测,软机器人和人机相互作用中使用的有趣潜力。然而,仍然存在大挑战:找到一种有效的应变传感机制,通过容易制造技术获得高可拉伸性和高灵敏度。在本文中,讨论了一种简单,环保和可扩展的方法,可根据棉织物开发这种应变传感器,这是一种丰富,成本效益和轻质的天然材料。提出了一种有效的涂布技术,以借助于导电油墨来实现高导电棉织织物,其是石墨烯纳米片和炭黑颗粒的杂交。夹层结构的可穿戴应变传感器可以在宽高达400%的宽度范围内工作,超高最大规格系数102?351,由织物破裂训练后的受控故意裂缝形成引起的。应变传感器在极低的应变水平(小于2%)下表现出具有很大的性能。还证明了他们在检测全方位的人体运动方面的优异反应。

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