Busolo Tommaso, Szewczyk Piotr K, Nair Malavika, Stachewicz Urszula, Kar-Narayan Sohini
Department of Materials Science and Metallurgy, University of Cambridge, CB3 0FS Cambridge, United Kingdom.
Faculty of Metals Engineering and Industrial Computer Science, AGH University of Science and Technology, 30-059 Kraków, Poland.
ACS Appl Mater Interfaces. 2021 Apr 14;13(14):16876-16886. doi: 10.1021/acsami.1c00983. Epub 2021 Mar 30.
Triboelectric generators are excellent candidates for smart textiles applications due to their ability to convert mechanical energy into electrical energy. Such devices can be manufactured into yarns by coating a conductive core with a triboelectric material, but current triboelectric yarns lack the durability and washing resistance required for textile-based applications. In this work, we develop a unique triboelectric yarn comprising a conducting carbon nanotube (CNT) yarn electrode coated with poly(vinylidene fluoride) (PVDF) fibers deposited by a customized electrospinning process. We show that the electrospun PVDF fibers adhere extremely well to the CNT core, producing a uniform and stable triboelectric coating. The PVDF-CNT coaxial yarn exhibits remarkable triboelectric energy harvesting during fatigue testing with a 33% power output improvement and a peak power density of 20.7 μW cm after 200 000 fatigue cycles. This is potentially due to an increase in the active surface area of the PVDF fiber coating upon repeated contact. Furthermore, our triboelectric yarn meets standard textile industry benchmarks for both abrasion and washing by retaining functionality over 1200 rubbing cycles and 10 washing cycles. We demonstrate the energy harvesting and motion sensing capabilities of our triboelectric yarn in prototype textile-based applications, thereby highlighting its applicability to smart textiles.
摩擦电发电机因其能够将机械能转化为电能,是智能纺织品应用的理想选择。此类装置可通过用摩擦电材料包覆导电芯体来制成纱线,但目前的摩擦电纱线缺乏基于纺织品应用所需的耐用性和耐洗性。在这项工作中,我们开发了一种独特的摩擦电纱线,它由涂覆有聚偏二氟乙烯(PVDF)纤维的导电碳纳米管(CNT)纱线电极组成,PVDF纤维通过定制的静电纺丝工艺沉积。我们表明,静电纺丝的PVDF纤维与CNT芯体的附着力极佳,形成了均匀且稳定的摩擦电涂层。在疲劳测试期间,PVDF-CNT同轴纱线表现出显著的摩擦电能量收集能力,功率输出提高了33%,在200000次疲劳循环后峰值功率密度达到20.7 μW/cm²。这可能是由于反复接触后PVDF纤维涂层的有效表面积增加所致。此外,我们的摩擦电纱线通过在1200次摩擦循环和10次洗涤循环后仍保持功能,达到了纺织行业的耐磨和耐洗标准。我们在基于纺织品的原型应用中展示了摩擦电纱线的能量收集和运动传感能力,从而突出了其在智能纺织品中的适用性。