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首页> 外文期刊>Materials Letters >Highly flexible and large areal/volumetric capacitances for asymmetric supercapacitor based on ZnCo_2O_4 nanorods arrays and polypyrrole on carbon cloth as binder-free electrodes
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Highly flexible and large areal/volumetric capacitances for asymmetric supercapacitor based on ZnCo_2O_4 nanorods arrays and polypyrrole on carbon cloth as binder-free electrodes

机译:基于ZnCo_2O_4纳米棒阵列和碳布上的聚吡咯作为非粘合剂电极的非对称超级电容器的高柔性和大面积/体积电容

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摘要

Flexible asymmetric supercapacitor (FAS), as a promising candidate for wearable or flexible electronic devices, draws great attention since it exhibits the flexibility and enhanced areal/volumetric capacitances comparing with the symmetrical Faraday capacitors. Herein, we grow unique ZnCo2O4 nanorods arrays on carbon cloth (ZnCo2O4-CF) by a simple hydrothermal method, and the electrode exhibits a remarkable areal (volumetric) capacitance of 5.18 F cm(2) (167.5 F cm(3)) at 5 mA cm(2) and exceptional capacitance retention of 92.8% after 3000 cycles. A FAS was fabricated using ZnCo2O4-CF as the positive and PPy-CC (deposition of Polypyrrole on carbon cloth) as negative electrodes, respectively. Especially, the asymmetric electrodes help the device to exhibit a wide potential window of 1.6 V and a high areal (volumetric) capacitance of 1.8 F cm(2) (148 F cm(3)). As a result, the FAS shows a maximum energy of 2.3 mW h cm(2) (18.9 mW h cm(3)) at a power density of 7.82 mW cm(2) (82.2 mW cm(3)) and a good stability after 5000 cycles at a current density of 5.0 A cm(2). Furthermore, the FAS shows good flexibility and can withstand bending at different angles while keeping electrochemical performance constant. (C) 2018 Elsevier B.V. All rights reserved.
机译:柔性非对称超级电容器(FAS)作为可穿戴或柔性电子设备的有希望的候选者,由于与对称法拉第电容器相比具有柔性和增强的面/体积电容,因此备受关注。在这里,我们通过一种简单的水热法在碳布(ZnCo2O4-CF)上生长独特的ZnCo2O4纳米棒阵列,并且该电极在5处表现出5.18 F cm(2)(167.5 F cm(3))的显着面积(体积)电容。 3000循环后,具有mA cm(2)和92.8%的出色电容保持率。分别使用ZnCo2O4-CF作为正极和PPy-CC(在碳布上沉积聚吡咯)作为负极制造FAS。特别是,不对称电极帮助该器件展现出1.6 V的宽电位窗口和1.8 F cm(2)(148 F cm(3))的高面积(体积)电容。结果,FAS在功率密度为7.82 mW cm(2)(82.2 mW cm(3))时显示最大能量为2.3 mW h cm(2)(18.9 mW h cm(3)) 5000次循环后,电流密度为5.0 A cm(2)。此外,FAS表现出良好的柔韧性,可以承受不同角度的弯曲,同时保持电化学性能恒定。 (C)2018 Elsevier B.V.保留所有权利。

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