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通过高度可扩展且超快的纱线染色技术制备用于可穿戴纺织传感器的工程石墨烯薄片

Engineering Graphene Flakes for Wearable Textile Sensors via Highly Scalable and Ultrafast Yarn Dyeing Technique.

作者信息

Afroj Shaila, Karim Nazmul, Wang Zihao, Tan Sirui, He Pei, Holwill Matthew, Ghazaryan Davit, Fernando Anura, Novoselov Kostya S

机构信息

National Graphene Institute (NGI) , The University of Manchester , Booth Street East , Manchester , M13 9PL , U.K.

School of Physics & Astronomy , The University of Manchester , Oxford Road , Manchester , M13 9PL , U.K.

出版信息

ACS Nano. 2019 Apr 23;13(4):3847-3857. doi: 10.1021/acsnano.9b00319. Epub 2019 Feb 28.

Abstract

Multifunctional wearable e-textiles have been a focus of much attention due to their great potential for healthcare, sportswear, fitness, space, and military applications. Among them, electroconductive textile yarn shows great promise for use as next-generation flexible sensors without compromising the properties and comfort of usual textiles. However, the current manufacturing process of metal-based electroconductive textile yarn is expensive, unscalable, and environmentally unfriendly. Here we report a highly scalable and ultrafast production of graphene-based flexible, washable, and bendable wearable textile sensors. We engineer graphene flakes and their dispersions in order to select the best formulation for wearable textile application. We then use a high-speed yarn dyeing technique to dye (coat) textile yarn with graphene-based inks. Such graphene-based yarns are then integrated into a knitted structure as a flexible sensor and could send data wirelessly to a device via a self-powered RFID or a low-powered Bluetooth. The graphene textile sensor thus produced shows excellent temperature sensitivity, very good washability, and extremely high flexibility. Such a process could potentially be scaled up in a high-speed industrial setup to produce tonnes (∼1000 kg/h) of electroconductive textile yarns for next-generation wearable electronics applications.

摘要

多功能可穿戴电子纺织品因其在医疗保健、运动服装、健身、太空和军事应用方面的巨大潜力而备受关注。其中,导电纺织纱线作为下一代柔性传感器具有很大的应用前景,同时又不影响普通纺织品的性能和舒适度。然而,目前基于金属的导电纺织纱线的制造工艺昂贵、不可扩展且对环境不友好。在此,我们报告了一种基于石墨烯的柔性、可清洗且可弯曲的可穿戴纺织传感器的高度可扩展和超快生产方法。我们对石墨烯薄片及其分散体进行设计,以便为可穿戴纺织应用选择最佳配方。然后,我们使用高速纱线染色技术,用基于石墨烯的墨水对纺织纱线进行染色(涂层处理)。接着,将这种基于石墨烯的纱线作为柔性传感器集成到针织结构中,并能够通过自供电的射频识别(RFID)或低功耗蓝牙将数据无线发送到设备。由此生产的石墨烯纺织传感器表现出优异的温度敏感性、良好的可清洗性和极高的柔韧性。这样的工艺有可能在高速工业生产装置中扩大规模,以生产用于下一代可穿戴电子产品的数吨(约1000千克/小时)导电纺织纱线。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24b3/6497368/cac348d2b98b/nn-2019-003195_0001.jpg

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