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Coaxial carbon nanotube/polymer fibers as wearable piezoresistive sensors

机译:同轴碳纳米管/聚合物纤维作为可穿戴压阻式传感器

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摘要

Stretchable sensors that can be incorporated into clothing are currently attracting tremendous interest for use as smart textiles and in flexible electronics. Herein, we report a facile, coaxial wet-spinning technique for the fabrication of high-performance, stretchable, fiber-shaped piezoresistive sensors using elastic silicone and multi-walled carbon nanotubes (MWCNTs). The coaxial fibers exhibited a variety of desirable parameters for strain sensing applications, including large workable strain range (300%), high sensitivity (gauge factor up to 1378), and long-term stability. Most interestingly, the coaxial fiber-shaped strain sensor exhibited a negative piezoresistive effect below a critical strain value, which was independent of the loading speed. The resistance relaxation behavior of the strain sensor was also investigated. The relaxation time decreased as the strain amplitude was increased. In addition, the coaxial fibers showed excellent tactile sensing performance when subjected to compressive forces. The tactile sensor typically demonstrated a high force sensitivity of 66.7% mN(-1) within a range of 160-300 mN, a low detection limit of 10 mN, a fast response time (200 ms), and high stability. These outstanding properties demonstrated that these materials have great potential for a range of electronics and robotic applications, including monitoring human motions, tactile sensing arrays, and human-machine interfaces. (C) 2018 Elsevier B.V. All rights reserved.
机译:可融入衣物中的可伸展传感器目前吸引了用作智能纺织品和柔性电子产品的巨大兴趣。在此,我们报告了使用弹性硅氧烷和多壁碳纳米管(MWCNT)制造高性能,可伸缩,纤维形压阻传感器的容易,同轴的湿纺技术。同轴纤维表现出各种所需参数,用于应变传感应用,包括大的可行应变范围(& 300%),高灵敏度(仪表系数高达1378),以及长期稳定性。最有意义地,同轴纤维形应变传感器在低于临界应变值的情况下表现出负压阻效应,其与装载速度无关。还研究了应变传感器的阻力弛豫行为。随着应变幅度增加,松弛时间减少。另外,同轴纤维在经受压缩力时显示出优异的触感感测性能。触觉传感器通常在160-300mn的范围内,在160-300mn的低检测限,10mN的低检测限,快速响应时间(& 200毫秒)和高稳定性方面,触觉敏感性为66.7%MN(-1)的高力敏感性。这些出色的属性证明了这些材料具有一系列电子设备和机器人应用的潜力,包括监测人类运动,触觉传感阵列和人机界面。 (c)2018年elestvier b.v.保留所有权利。

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