首页> 外文期刊>Journal of power sources >Enhanced electrochemical properties of hierarchically sheath-core aligned carbon nanofibers coated carbon fiber yarn electrode-based supercapacitor via polyaniline nanowire array modification
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Enhanced electrochemical properties of hierarchically sheath-core aligned carbon nanofibers coated carbon fiber yarn electrode-based supercapacitor via polyaniline nanowire array modification

机译:通过聚苯胺纳米线阵列修饰增强鞘核排列的碳纳米纤维包覆的碳纤维纱电极基超级电容器的电化学性能

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摘要

Scalable manufacturing of yarn-based supercapacitors with high energy density is highly desired for powering wearable electronics and smart textiles. In this paper, we report a novel type of sheath-core polyaniline nanowire array grown on aligned carbon nanofibers/carbon fiber yarn electrode (CFY@CNFs@PANI NWA) based super capacitors. The carbon fiber yarn can maintain the yarn electrode with high electrical conductivity and mechanical properties. The introduced PANI NWA can further enlarge the specific surface area of the electrode and introduce pseudo-capacitance. The assembled solid-state supercapacitors show high areal specific capacitance of 234 mF/cm(2) at a current density of 0.1 mA/cm(2), and corresponded energy density of 21.4 mu W h/cm(2) at power density of 0.52 mW/cm(2) in EMIMBF4/PVDF/DMF gel electrolyte. The supercapacitors also exhibit ultrahigh rate capability (68%) and excellent cycle stability (90% after 8000 cycles). We also demonstrated that a 20-cm long supercapacitor can be readily to power up 36 pieces of red LEDs with a logo of "DHU". The scalable strategy paves a way towards mass production of wearable energy storage devices for smart textiles.
机译:为了给可穿戴电子设备和智能纺织品供电,人们迫切需要具有高能量密度的可扩展制造的基于纱线的超级电容器。在本文中,我们报告了一种新型的基于核碳纳米纤维/碳纤维纱线电极(CFY @ CNFs @ PANI NWA)的超级电容器上生长的皮芯聚苯胺纳米线阵列。碳纤维纱可以保持纱线电极具有高的导电性和机械性能。引入的PANI NWA可以进一步扩大电极的比表面积并引入伪电容。组装的固态超级电容器在0.1 mA / cm(2)的电流密度下显示出234 mF / cm(2)的高单位面积比电容,在功率密度为2的情况下对应的能量密度为21.4μW h / cm(2)。在EMIMBF4 / PVDF / DMF凝胶电解质中为0.52 mW / cm(2)。超级电容器还具有超高倍率能力(68%)和出色的循环稳定性(8000次循环后为90%)。我们还演示了一个20厘米长的超级电容器可以轻松地为36个带有“ DHU”徽标的红色LED供电。可扩展策略为大规模生产用于智能纺织品的可穿戴式能量存储设备铺平了道路。

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