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可水洗、可缝纫的全碳电极和电子服装信号导线。

Washable, Sewable, All-Carbon Electrodes and Signal Wires for Electronic Clothing.

机构信息

Departments of Neurology, Bioengineering, Physical Medicine and Rehabilitation, Center for Neuroengineering and Therapeutics, University of Pennsylvania, Philadelphia, Pennsylvania 19104, United States.

Center for Neurotrauma, Neurodegeneration, and Restoration, Corporal Michael J. Crescenz Veterans Affairs Medical Center, Philadelphia, Pennsylvania 19104, United States.

出版信息

Nano Lett. 2021 Sep 8;21(17):7093-7099. doi: 10.1021/acs.nanolett.1c01039. Epub 2021 Aug 30.

Abstract

Smart wearable electronic accessories (e.g., watches) have found wide adoption; conversely, progress in electronic textiles has been slow due to the difficulty of embedding rigid electronic materials into flexible fabrics. Electronic clothing requires fibers that are conductive, robust, biocompatible, and can be produced on a large scale. Here, we create sewable electrodes and signal transmission wires from neat carbon nanotube threads (CNTT). These threads are soft like standard sewing thread, but they have metal-level conductivity and low interfacial impedance with skin. Electrocardiograms (EKGs) obtained by CNTT electrodes were comparable ( > 0.05) to signals obtained with commercial electrodes. CNTT can also be used as transmission wires to carry signals to other parts of a garment. Finally, the textiles can be machine-washed and stretched repeatedly without signal degradation. These results demonstrate promise for textile sensors and electronic fabric with the feel of standard clothing that can be incorporated with traditional clothing manufacturing techniques.

摘要

智能可穿戴电子配件(例如手表)已经得到了广泛应用;相反,由于将刚性电子材料嵌入到柔性织物中存在困难,电子纺织品的发展一直较为缓慢。电子服装需要具有导电性、耐用性、生物相容性且能够大规模生产的纤维。在这里,我们使用整齐的碳纳米管线(CNTT)制造了可缝制的电极和信号传输线。这些线像标准缝纫线一样柔软,但它们具有金属级别的导电性,与皮肤的界面阻抗低。CNTT 电极获得的心电图(EKG)与商用电极获得的信号相当(>0.05)。CNTT 还可以用作传输线,将信号传输到服装的其他部分。最后,纺织品可以反复机洗和拉伸,而不会导致信号降级。这些结果表明,具有标准服装触感的纺织传感器和电子织物具有很大的应用潜力,它们可以与传统的服装制造技术相结合。

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