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Highly efficient and stable negative electrode for asymmetric supercapacitors based on graphene/FeCo2O4 nanocomposite hybrid material

机译:基于石墨烯/ FECO2O4纳米复合杂化材料的非对称超级电容器高效稳定的负极

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The integration of two-dimensional (2D) reduced graphene oxide (rGO) and binary metal oxide in a single electrode for asymmetric supercapacitors (ASC) is promising for overcoming the challenges driven by increasing energy-storage demands. In present work, we proposed a novel rGO/FeCo2O4 hybrid electrode as a negative electrode for asymmetric supercapacitors (ASC). Briefly, we engineered 3-dimensional nanocomposite materials by decorating FeCo2O4 nanoparticles on rGO nanosheets using facile strategy. Owing to the strong chemical bonding between the FeCo2O4 nanoparticles and rGO nanosheets, as-prepared rGO/FeCo2O4 hybrid electrode shows an ultrahigh specific capacitance of 1710 F/g on the negative potential side. Later, asymmetric supercapacitor was assembled using MnO2 nanowires as positive electrode and rGO/FeCo2O4 hybrid as negative electrode, respectively. The proposed device achieved a maximum specific capacitance of 260 F/g with a specific energy of 67.5 Wh/kg and exhibited excellent cycling performance (96.02% capacity retention after 5000 cycles). Thus, the proposed design of the high-energy ASC is promising for next-generation energy-storage devices being developed for modern consumer applications. (C) 2018 Elsevier Ltd. All rights reserved.
机译:二维(2D)还原的石墨烯氧化物(RGO)和二元金属氧化物在单个电极中的不对称超级电容器(ASC)的整合是有望克服通过提高能量储存需求驱动的挑战。在目前的工作中,我们提出了一种新的RGO / FeCO2O4混合电极作为不对称超级电容器的负电极(ASC)。简而言之,我们通过使用容易的策略装饰RGO纳米片上的FeCo2O4纳米粒子来设计三维纳米复合材料。由于FeCo2O4纳米颗粒和纳米片RGO之间的强的化学结合,所制备的RGO / FeCo2O4混合电极节目1710 F / g的超高比电容在负电势侧。后来,使用MnO2纳米线作为正极和Rgo / FeCO2O4杂合物作为负电极组装不对称超级电容器。所提出的装置实现了260 f / g的最大特定电容,特定能量为67.5WH / kg,并表现出优异的循环性能(5000次循环后96.02%的容量保留)。因此,所提出的高能量ASC设计是对用于现代消费者应用开发的下一代能量存储设备。 (c)2018年elestvier有限公司保留所有权利。

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