Sung Yu-Shun, Lin Lu-Yin
Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, Taipei 10608, Taiwan.
Research Center of Energy Conservation for New Generation of Residential, Commercial, and Industrial Sectors, Taipei 10608, Taiwan.
Nanomaterials (Basel). 2020 Jan 30;10(2):248. doi: 10.3390/nano10020248.
Fiber-type supercapacitors (FSC) have attracted much attention as efficient energy storage devices for soft electronics. This study proposes the synthesis of polypyrrole (PPy) on carbon fiber (CF) using electropolymerization as the energy storage electrode for FSC. Effects of the electrolyte, applied current, and time of electropolymerization for synthesizing PPy on CF are investigated. The configuration of the electrochemical system is also studied to better understand the electropolymerization of PPy. The highest specific capacitance (C) of 308.2 F/g are obtained for the PPy electrode prepared using 0.5 M pyrrole and 0.3 M NaClO as the electrolyte at 40 mA for 20 min. The FSC assembled with PPy electrodes and the polyvinyl alcohol/HPO gel electrolyte shows a C value of 30 F/g and the energy density of 5.87 Wh/kg at the power density of 60.0 W/kg. Excellent cycling stability with C retention of 70% and Coulombic efficiency higher than 98% in 3000 times charge/discharge process, and the good bending capability with C retention of 153% and 148%, respectively, under the bending angle of 180° and the bending times of 600 are achieved. This work gives deeper understanding of electropolymerization and provides recipes for fabricating an efficient PPy electrode for soft energy storage devices.
纤维型超级电容器(FSC)作为用于柔性电子器件的高效储能装置已备受关注。本研究提出通过电聚合在碳纤维(CF)上合成聚吡咯(PPy)作为FSC的储能电极。研究了电解质、施加电流以及在CF上合成PPy的电聚合时间的影响。还研究了电化学系统的配置,以更好地理解PPy的电聚合过程。使用0.5 M吡咯和0.3 M NaClO作为电解质,在40 mA下电聚合20分钟制备的PPy电极获得了最高比电容(C)为308.2 F/g。用PPy电极和聚乙烯醇/HPO凝胶电解质组装的FSC在功率密度为60.0 W/kg时显示出C值为30 F/g,能量密度为5.87 Wh/kg。在3000次充放电过程中具有出色的循环稳定性,电容保持率为70%,库仑效率高于98%,并且在180°弯曲角度和600次弯曲次数下分别具有153%和148%的良好弯曲保持率。这项工作对电聚合有了更深入的理解,并为制造用于软储能装置的高效PPy电极提供了方法。