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Flexible fiber hybrid supercapacitor with NiCo2O4 nanograss@carbon fiber and bio-waste derived high surface area porous carbon

机译:NiCo2O4纳米草@碳纤维和生物垃圾衍生的高表面积多孔碳的柔性纤维混合超级电容器

摘要

Flexible, light weight and portable energy storage devices are receiving much attention for flexible electronic applications. Nonetheless, these conventional two-dimensional (2D) or planar structured flexible energy storage devices could not meet the demand for wearable or textile electronics. To meet this demand, in this work, a novel flexible fiber hybrid supercapacitor (HSC) is fabricated using NiCo2O4 nanograss (NG)-array coated carbon fiber (NiCo2O4 NG@CF) as the positive electrode to provide a pseudocapacitance and porous carbon coated carbon fiber electrode as the negative electrode to provide an electric double-layer capacitance (EDLC). Particularly, the porous carbon is prepared from Lemon peel waste to obtain a low cost electrode material. Interestingly, the fabricated HSC exhibits a maximum specific capacitance of 17.5 F g-1 (25.03 mF cm-2) and an energy density of 6.61 Wh kg-1 (9.46 μWh cm-2) at the current of 1 mA, which is far better than previous reports. Moreover, three knitted fiber HSCs connected in series could successfully power up a red LED, even at a folded condition. It is believed that this type of fiber HSC could be a potential candidate for flexible/wearable electronic applications.
机译:柔性,轻量和便携式能量存储设备在柔性电子应用中受到了广泛的关注。然而,这些常规的二维(2D)或平面结构的柔性能量存储设备不能满足对可穿戴或纺织电子设备的需求。为了满足这一需求,在这项工作中,使用NiCo2O4纳米草(NG)阵列涂覆的碳纤维(NiCo2O4 NG @ CF)作为正极制造了新型柔性纤维混合超级电容器(HSC),以提供拟电容和多孔碳涂覆的碳纤维电极作为负电极,以提供双电层电容(EDLC)。特别地,从柠檬皮废料制备多孔碳以获得低成本的电极材料。有趣的是,在1 mA电流下,所制造的HSC的最大比电容为17.5 F g-1(25.03 mF cm-2),能量密度为6.61 Wh kg-1(9.46μWhcm-2)。比以前的报告更好。此外,即使在折叠状态下,三个串联的编织纤维HSC仍可以成功为红色LED供电。人们认为,这种类型的光纤HSC可能是柔性/可穿戴电子应用的潜在候选者。

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