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Advances in graphene-based supercapacitor electrodes

机译:基于石墨烯的超级电容器电极进展

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Graphene-based materials are widely explored as the active electrode materials for energy storage and conversion devices, especially supercapacitors (SCs). Their high electrochemically active surface area, hierarchical porous structure, excellent compressibility, and high mechanical stability, as well as excellent conductivity, are the critical merits for providing robust and facilitative channels for charge transport. Various studies have explored many possible ways to utilize the maximum potential of graphene-based SC electrodes, and graphene research is booming, given its exceptional charge storage properties. This review focuses on the class-specific electrode materials for different types of SCs, followed by the classification and critical review of graphene-based electrodes reported in the past five years. The current challenges in the field have also been discussed with a focus on promising pathways for future research.
机译:基于石墨烯的材料被广泛探索为能源储存和转换装置的有源电极材料,特别是超级电容器(SCS)。它们的高电化学活性表面积,分层多孔结构,优异的可压缩性和高机械稳定性以及优异的导电性是提供用于为电荷运输提供稳健和促进通道的关键优点。各种研究探索了利用基于石墨烯的SC电极的最大电位的许多可能的方法,并且鉴于其卓越的电荷存储特性,石墨烯研究正在蓬勃发展。本综述侧重于不同类型SCS的特定类电极材料,其次是过去五年报告的石墨烯基电极的分类和关键综述。该领域目前的挑战也在讨论了未来研究的有前途的途径。

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