Zhang Dewei, Yang Weifeng, Gong Wei, Ma Wanwan, Hou Chengyi, Li Yaogang, Zhang Qinghong, Wang Hongzhi
State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai, 201620, P. R. China.
College of Textiles, Donghua University, Shanghai, 201620, P. R. China.
Adv Mater. 2021 Jul;33(26):e2100782. doi: 10.1002/adma.202100782. Epub 2021 May 24.
Emerging energy harvesting yarns, via triboelectric effects, have wide application prospects in new-generation wearable electronics. However, few studies have been carried out regarding simultaneously achieving high electrical performance, mechanical robustness, and comfortability in industrial-scalable yarn. Here, an electronic yarn twisted into Fermat spiral, which has outstanding dynamic structure stability, is reported. The Fermat-spiral-based energy yarns (FSBEY) can simultaneously realize ultrahigh abrasion resistance (over 5000 Martindale standard abrasion cycles), stable reversible strain (100%), and excellent electrical output. Considerably high output (105 V, ≈1.2 µA under 2 Hz) can be attained upon contacting a single yarn (30 cm) with latex material, which is superior to most state-of-the-art stretchable triboelectric yarns. The application of these FSBEY in wireless gesture recognition, smart screen information protection, and harvesting of energy from water dropletsis demonstrated. Moreover, textiles knitted from the FSBEY have distinguished waterproof nature and are breathable. This work shows a feasible proposal for building future "energy garments".
新兴的通过摩擦电效应的能量收集纱线在新一代可穿戴电子产品中具有广阔的应用前景。然而,关于在工业可扩展纱线中同时实现高电性能、机械稳健性和舒适性的研究却很少。在此,报道了一种捻成费马螺旋线的电子纱线,其具有出色的动态结构稳定性。基于费马螺旋线的能量纱线(FSBEY)能够同时实现超高耐磨性(超过5000次马丁代尔标准耐磨循环)、稳定的可逆应变(100%)以及优异的电输出。当单根纱线(30厘米)与乳胶材料接触时,可获得相当高的输出(2赫兹下为105伏,约1.2微安),这优于大多数最先进的可拉伸摩擦电纱线。展示了这些FSBEY在无线手势识别、智能屏幕信息保护以及从水滴中收集能量方面的应用。此外,由FSBEY针织而成的纺织品具有卓越的防水性且透气。这项工作为构建未来的“能量服装”提出了一个可行的方案。