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Direct anodic exfoliation of graphite onto high-density aligned graphene for large capacity supercapacitors

机译:将石墨直接阳极剥离在高密度对准石墨烯上,用于大容量超级电容器

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摘要

Vertically oriented graphene nanosheets (VOGNs) fabricated on conductive substrates with a large amount of edge planes and open channels are ideal for electrochemical double-layer (EDL) capacitor electrodes. However, preparation of such a structure with high-density of graphene nanosheets is challenging. Herein, a facile, environment-friendly, and economical technique to prepare high-quality VOGNs directly on conductive graphite plates with a high mass loading is described. The VOGNs are obtained by electrochemical anodization of graphite and a large amount of aligned reduced graphene oxide (rGO) is produced and adheres strongly to the graphite substrate (G@rGO). The symmetrical supercapacitors composed of the G@rGO electrodes exhibit a high volumetric capacitance of 3.9 F cm(-3) and energy density of 0.66 Wh L-1 (based on the volume of the whole electrode) at a current density of 7.5 mA cm(-3) in 6 M KOH. The rate performance and long-term cycling stability are very good. The outstanding capacitive performance can be attributed to the unique structure of the G@rGO electrode which facilitates transportation of ions between the electrolyte and graphene surface, minimizes the distributive nature of charge storage, expedites the formation of EDL, and enhances the electrochemical utilization of graphene and stability by avoiding restacking and aggregation of graphene nanosheets.
机译:在具有大量边缘平面和打开通道的导电基板上制造的垂直定向的石墨烯纳米片(Vogns)是用于电化学双层(EDL)电容器电极的理想选择。然而,制备具有高密度的石墨烯纳米片的这种结构是具有挑战性的。这里,描述了一种容纳,环保和经济技术,用于直接在具有高质量荷载的导电石墨板上制备高质量Vokns。通过石墨的电化学阳极氧化获得Vogn,并产生大量的对齐的石墨烯(RGO)并强烈地粘附到石墨衬底(G rgo)。由G @ RGO电极组成的对称超级电容器表现出3.9 f cm(-3)的高容量电容,并且在电流密度为7.5 mA cm的电流密度下(基于整个电极的体积)的能量密度(-3)在6米KOH中。速率性能和长期循环稳定性非常好。优异的电容性能可以归因于G @ Rgo电极的独特结构,这有利于电解质和石墨烯表面之间的离子运输,最大限度地减少电荷存储的分布性,加速了EDL的形成,并增强了石墨烯的电化学利用通过避免石墨烯纳米片的重新包装和聚集来稳定。

著录项

  • 来源
    《Nano Energy 》 |2017年第2017期| 共9页
  • 作者单位

    Hong Kong Polytech Univ Dept Appl Biol &

    Chem Technol Kowloon Hong Kong Peoples R China;

    City Univ Hong Kong Dept Phys &

    Mat Sci Tat Chee Ave Kowloon Hong Kong Peoples R China;

    Hong Kong Polytech Univ Dept Appl Biol &

    Chem Technol Kowloon Hong Kong Peoples R China;

    Huazhong Univ Sci &

    Technol Wuhan Natl Lab Optoelect Wuhan 430074 Peoples R China;

    Huazhong Univ Sci &

    Technol Wuhan Natl Lab Optoelect Wuhan 430074 Peoples R China;

    Hong Kong Polytech Univ Dept Appl Biol &

    Chem Technol Kowloon Hong Kong Peoples R China;

    Hong Kong Polytech Univ Dept Appl Biol &

    Chem Technol Kowloon Hong Kong Peoples R China;

    City Univ Hong Kong Dept Phys &

    Mat Sci Mat Engn Tat Chee Ave Kowloon Hong Kong Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 能源与动力工程 ;
  • 关键词

    Aligned graphene; Supercapacitor; Electrochemical exfoliation; Energy storage;

    机译:对齐的石墨烯;超级电容器;电化学剥离;能量存储;

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