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具有交织导电网络的柔性MXene修饰织物,用于集成焦耳加热、电磁干扰屏蔽和应变传感性能

Flexible MXene-Decorated Fabric with Interwoven Conductive Networks for Integrated Joule Heating, Electromagnetic Interference Shielding, and Strain Sensing Performances.

作者信息

Zhang Xiansheng, Wang Xifeng, Lei Zhiwei, Wang Lili, Tian Mingwei, Zhu Shifeng, Xiao Hong, Tang Xiaoning, Qu Lijun

机构信息

Research Center for Intelligent and Wearable Technology, College of Textiles and Clothing, State Key Laboratory of Bio-Fibers and Eco-Textiles, Collaborative Innovation Center for Eco-Textiles of Shandong Province, Qingdao University, Qingdao, Shandong 266071, P.R. China.

State Key Laboratory of Bio-Fibers and Eco-Textiles, Collaborative Innovation Center of Marine Biobased Fiber and Ecological Textile Technology, Institute of Marine Biobased Materials, Qingdao University, Qingdao, Shandong 266071, P.R. China.

出版信息

ACS Appl Mater Interfaces. 2020 Mar 25;12(12):14459-14467. doi: 10.1021/acsami.0c01182. Epub 2020 Mar 12.

Abstract

Although flexible and multifunctional textile-based electronics are promising for wearable devices, it is still a challenge to seamlessly integrate excellent conductivity into textiles without sacrificing their intrinsic flexibility and breathability. Herein, the vertically interconnected conductive networks are constructed based on a meshy template of weave cotton fabrics with interwoven warp and weft yarns. The two-dimensional early transition metal carbides/nitrides (MXenes), with unique metallic conductivity and hydrophilic surfaces, are uniformly and intimately attached to the preformed fabric via a spray-drying coating approach. Through adjusting the spray-drying cycles, the degree of conductive interconnectivity for the fabrics is precisely tuned, thereby affording highly conductive and breathable fabrics with integrated Joule heating, electromagnetic interference (EMI) shielding and strain sensing performances. Interestingly, triggered by the interwoven conductive architecture, the MXene-decorated fabrics with a low loading of 6 wt % (0.78 mg cm) offer an outstanding electrical conductivity of 5 Ω sq. The promising electrical conductivity further endows the fabrics with superior Joule heating performance with a heating temperature up to 150 °C at a supply voltage of 6 V, excellent EMI shielding performance, and highly sensitive strain responses to human motion. Consequently, this work offers a novel strategy for the versatile design of multifunctional textile-based wearable devices.

摘要

尽管基于纺织品的柔性多功能电子产品在可穿戴设备方面前景广阔,但在不牺牲其固有柔韧性和透气性的前提下,将优异的导电性无缝集成到纺织品中仍是一项挑战。在此,基于具有交织经纬纱的编织棉织物的网状模板构建垂直互连的导电网络。具有独特金属导电性和亲水表面的二维早期过渡金属碳化物/氮化物(MXenes)通过喷雾干燥涂层方法均匀且紧密地附着在预制织物上。通过调整喷雾干燥循环,可精确调节织物的导电互连程度,从而获得具有集成焦耳加热、电磁干扰(EMI)屏蔽和应变传感性能的高导电性和透气性织物。有趣的是,由交织导电结构引发,负载量低至6 wt%(0.78 mg cm)的MXene装饰织物具有5 Ω sq的出色电导率。这种有前景的电导率进一步赋予织物卓越的焦耳加热性能,在6 V电源电压下加热温度可达150°C,优异的EMI屏蔽性能以及对人体运动的高灵敏度应变响应。因此,这项工作为多功能基于纺织品的可穿戴设备的通用设计提供了一种新策略。

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