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Multifunctional wearable smart device based on conductive reduced graphene oxide/polyester fabric

机译:基于导电氧化石墨烯/聚酯纤维的多功能可穿戴智能设备

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摘要

Wearable smart devices have drawn tremendous attention recently in the fields including conducive clothing, strain sensors and body heaters for thermotherapy and heat preservation. However, the traditional smart devices exhibit poor wearability and flexibility mainly due to the metallic components they contain, including integrated circuits, semiconductors etc. In this work, we report the preparation of multifunctional reduced graphene oxide/ polyester (rGO/PET) fabrics through suction filtration and reduction, using hydriodic acid (HI) and acetic acid based vapour-phase system. As-prepared rGO/PET fabrics showed the square resistance as low as 24.7 Omega/square, when the GO concentration was 3 mg/ml. Meanwhile, the variation of the electrical resistance was insignificant after 100 bending-releasing operations and 10 folding-releasing cycles. When the rGO/PET fabric served as a strain sensor, the rGO/PET fabrics exhibited high sensitivity, remarkable reliability and feasibility. Furthermore, the rGO/PET fabric exhibited efficient electrothermal response, homogeneous temperature distribution and remarkable flexibility as large-area flexible heater. As-prepared fabrics were further analyzed as wearable strain sensors and ultra-fast responding electrothermal heaters, suggesting their great potential as wearable smart devices in personal healthcare applications.
机译:可穿戴智能设备最近在包括导电性服装,应变传感器和用于热疗和保温的人体加热器等领域引起了极大的关注。但是,传统的智能设备的可穿戴性和柔韧性差,主要是因为它们所包含的金属成分,包括集成电路,半导体等。在这项工作中,我们报道了通过抽吸制备多功能还原型氧化石墨烯/聚酯(rGO / PET)织物使用氢碘酸(HI)和醋酸基蒸气相系统进行过滤和还原。当GO浓度为3 mg / ml时,准备好的rGO / PET织物显示出低至24.7Ω/平方的方形阻力。同时,在100次弯曲释放操作和10次折叠释放循环之后,电阻的变化微不足道。当rGO / PET织物用作应变传感器时,rGO / PET织物显示出高灵敏度,出色的可靠性和可行性。此外,rGO / PET织物作为大面积柔性加热器表现出有效的电热响应,均匀的温度分布和显着的柔韧性。将制成的织物作为可穿戴式应变传感器和超快响应电热加热器进行了进一步分析,表明它们在个人医疗保健应用中具有可穿戴智能设备的巨大潜力。

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