Wu Yuntao, Meng Zijie, Yang Junhe, Xue Yuhua
School of Materials Science and Engineering, the University of Shanghai for Science and Technology, 516 Jungong Road, Shanghai 200093, People's Republic of China.
Nanotechnology. 2021 Apr 30;32(29). doi: 10.1088/1361-6528/abf5fe.
Fiber-shaped supercapacitors (FSCs) are promising energy storage devices for portable and wearable electronics due to their miniaturized size, flexibility, and knittability. Despite the significant progress in this area, it is still a challenge to develop large capacitance and high energy density FSCs for practical applications. In this work, a hybrid fiber composed of reduced graphene oxide and polyaniline nanoparticles (r-PANI-GOF) is synthesized viasynthesis of polyaniline nanoparticles both on the surface and inside of graphene fibers. The areal specific capacitance of a single r-PANI-GOF electrode is as large as 1755 mF cmin the three-electrode system. The r-PANI-GOF hybrid fibers were also used as electrodes for making an all-solid-state FSCs. This whole device has a specific areal capacitance of up to 481 mF cmand a high areal energy density of 42.76Wh cm. The hybrid fiber electrodes with a high capacitance, and excellent flexibility may become new candidates for the development of fiber-shaped high-performance energy storage devices.
纤维状超级电容器(FSCs)由于其尺寸小型化、柔韧性和可编织性,是用于便携式和可穿戴电子产品的有前景的储能设备。尽管该领域取得了重大进展,但开发用于实际应用的大电容和高能量密度的FSCs仍然是一个挑战。在这项工作中,通过在石墨烯纤维的表面和内部合成聚苯胺纳米颗粒,合成了一种由还原氧化石墨烯和聚苯胺纳米颗粒组成的混合纤维(r-PANI-GOF)。在三电极系统中,单个r-PANI-GOF电极的面积比电容高达1755 mF/cm²。r-PANI-GOF混合纤维还被用作制造全固态FSCs的电极。整个器件的比面积电容高达481 mF/cm²,面积能量密度高达42.76 μWh/cm²。具有高电容和优异柔韧性的混合纤维电极可能成为开发纤维状高性能储能设备的新候选材料。