Chen Yuejiao, Xu Bingang, Wen Jianfeng, Gong Jianliang, Hua Tao, Kan Chi-Wai, Deng Jiwei
Nanotechnology Center, Institute of Textiles and Clothing, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong.
College of Mechanical and Electrical Engineering, Central South University, 410083, China.
Small. 2018 May;14(21):e1704373. doi: 10.1002/smll.201704373. Epub 2018 Apr 19.
Rapid advances in functional electronics bring tremendous demands on innovation toward effective designs of device structures. Yarn supercapacitors (SCs) show advantages of flexibility, knittability, and small size, and can be integrated into various electronic devices with low cost and high efficiency for energy storage. In this work, functionalized stainless steel yarns are developed to support active materials of positive and negative electrodes, which not only enhance capacitance of both electrodes but can also be designed into stretchable configurations. The as-made asymmetric yarn SCs show a high energy density of 0.0487 mWh cm (10.19 mWh cm ) at a power density of 0.553 mW cm (129.1 mW cm ) and a specific capacitance of 127.2 mF cm under an operating voltage window of 1.7 V. The fabricated SC is then made into a stretchable configuration by a prestraining-then-releasing approach using polydimethylsiloxane (PDMS) tube, and its electrochemical performance can be well maintained when stretching up to a high strain of 100%. Moreover, the stretchable cable-type SCs are stably workable under water-immersed condition. The method opens up new ways for fabricating flexible, stretchable, and waterproof devices.
功能电子学的迅速发展对器件结构的有效设计创新提出了巨大需求。纱线超级电容器(SCs)具有柔韧性、可编织性和尺寸小的优点,并且可以低成本、高效率地集成到各种电子设备中用于能量存储。在这项工作中,开发了功能化不锈钢纱线来支撑正负极的活性材料,这不仅提高了两个电极的电容,还可以设计成可拉伸的结构。所制备的不对称纱线SCs在功率密度为0.553 mW cm(129.1 mW cm)时,能量密度为0.0487 mWh cm(10.19 mWh cm),在1.7 V的工作电压窗口下比电容为127.2 mF cm。然后通过使用聚二甲基硅氧烷(PDMS)管的预拉伸然后释放方法将制造的SCs制成可拉伸结构,并且当拉伸到高达100%的高应变时,其电化学性能可以得到很好的保持。此外,可拉伸电缆型SCs在水浸条件下可稳定工作。该方法为制造柔性、可拉伸和防水器件开辟了新途径。