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Conformable and ionic textiles using sheath-core carbon nanotube microyarns for highly sensitive and reliable pressure sensors

机译:使用鞘芯碳纳米管微纱线的适形和离子纺织品,用于高度灵敏和可靠的压力传感器

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In order to exploit large-area and conformable electronic textile (e-textile) pressure sensors that are consistently sensitive to a wide range of pressures, both superior electrical and mechanical properties such as high conductivity and high flexibility are strongly required in individual yarns, but remain unexplored in tactile sensor research. In this report, we demonstrate the first highly sensitive, conformable and reliable ionic textile (i-textile) pressure sensors using sheath-core carbon nanotube (CNT) microyarns encapsulated with ionic thermoplastic polyurethane (i-TPU) dielectrics. The piezocapacitive i-textile pressure sensors that are formed by weaving two distinct sets of microyarns (CNT microyarns and i-TPU/CNT microyarns), were capable of simultaneously detecting subtle pressure and human touch with a high sensitivity of 1 nF kPa?1 and operational reliability over a wide range of pressure, even under low-voltage. We believe that the conformable i-textile pressure sensors suggested by us will be a promising platform to achieve human-adaptive wearable textronics capable of perceiving health monitoring as well as real-time human motion.
机译:为了开发对大范围压力持续敏感的大面积且合适的电子纺织品(e-textile)压力传感器,单个纱线强烈要求具有出色的电气和机械性能,例如高导电性和高柔韧性。在触觉传感器研究中仍未探索。在本报告中,我们展示了首个使用包覆有离子热塑性聚氨酯(i-TPU)电介质的皮芯碳纳米管(CNT)微纱的高灵敏度,顺应性和可靠性高的离子纺织(i-textile)压力传感器。通过编织两组截然不同的微纱(CNT微纱和i-TPU / CNT微纱)形成的压电电容性i-纺织品压力传感器,能够以1 nF kPa的高灵敏度同时检测细微的压力和人的触觉。 ?1 和即使在低压下也能在较大压力范围内运行的可靠性。我们相信,我们建议的顺应性i纺织品压力传感器将成为一个有前途的平台,以实现能够感知健康监测和实时人体运动的人体适应性可穿戴纺织品。

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