Center for Bio-Artificial Muscle and Department of Biomedical Engineering, Hanyang University, Seoul 133-791, South Korea.
Nat Commun. 2013;4:1970. doi: 10.1038/ncomms2970.
Flexible, wearable, implantable and easily reconfigurable supercapacitors delivering high energy and power densities are needed for electronic devices. Here we demonstrate weavable, sewable, knottable and braidable yarns that function as high performance electrodes of redox supercapacitors. A novel technology, gradient biscrolling, provides fast-ion-transport yarn in which hundreds of layers of conducting-polymer-infiltrated carbon nanotube sheet are scrolled into ~20 μm diameter yarn. Plying the biscrolled yarn with a metal wire current collector increases power generation capabilities. The volumetric capacitance is high (up to ~179 F cm(-3)) and the discharge current of the plied yarn supercapacitor linearly increases with voltage scan rate up to ~80 V s(-1) and ~20 V s(-1) for liquid and solid electrolytes, respectively. The exceptionally high energy and power densities for the complete supercapacitor, and high cycle life that little depends on winding or sewing (92%, 99% after 10,000 cycles, respectively) are important for the applications in electronic textiles.
对于电子设备而言,人们需要灵活、可穿戴、可植入且易于重新配置的超级电容器,以实现高能量密度和功率密度。在此,我们展示了一种编织、缝纫、打结和编织纱线的新技术,这种纱线可用作氧化还原超级电容器的高性能电极。一种新颖的梯度双轴卷绕技术提供了快速离子传输纱线,其中数百层聚合物渗透碳纳米管片被卷绕成20 μm 的直径纱线。将双轴卷绕纱线与金属丝集流器进行并捻,可以提高发电能力。体积电容高(高达179 F cm(-3)),并且对于液体和固体电解质,双轴卷绕纱线超级电容器的放电电流随电压扫描速率线性增加,分别高达80 V s(-1)和20 V s(-1)。完整超级电容器的超高能量和功率密度以及对绕组或缝纫几乎没有依赖性的长循环寿命(分别为 92%和 99%,循环 10000 次后),对于电子纺织品的应用非常重要。