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Modified MXene/Holey Graphene Films for Advanced Supercapacitor Electrodes with Superior Energy Storage

机译:用于高级超级电容器电极的改性MXene / Holey石墨烯薄膜具有出色的储能性能

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摘要

MXene films are attractive for advanced supercapacitor electrodes requiring high volumetric energy density due to their high redox capacitance combined with extremely high packing density. However, the self‐restacking of MXene flakes unavoidably decreases the volumetric performance, mass loading, and rate capability. Herein, a simple strategy is developed to prepare a flexible and free‐standing modified MXene/holey graphene film by filtration of the alkalized MXene and holey graphene oxide dispersions, followed by a mild annealing treatment. After terminal groups (—F/—OH) are removed, the increased proportion of Ti atoms enables more pseudocapacitive reaction. Meanwhile, the embedded holey graphene effectively prevents the self‐restacking of MXene and forms a high nanopore connectivity network, which is able to immensely accelerate the ion transport and shorten transport pathways for both ion and electron. When applied as electrode materials for supercapacitors, it can deliver an ultrahigh volumetric capacitance (1445 F cm−3) at 2 mV s−1, excellent rate capability, and high mass loading. In addition, the assembled symmetric supercapacitor demonstrates a fantastic volumetric energy density (38.6 Wh L−1), which is the highest value reported for MXene‐based electrodes in aqueous electrolytes. This work opens a new avenue for the further exploration of MXene materials in energy storage devices.
机译:MXene膜因其高氧化还原电容和极高的堆积密度而对于要求高体积能量密度的高级超级电容器电极具有吸引力。但是,MXene薄片的自动堆放不可避免地会降低体积性能,质量负载和速率能力。本文中,通过过滤碱化的MXene和多孔的石墨烯氧化物分散体,然后进行温和的退火处理,开发了一种简单的策略来制备柔性且独立的改性MXene /多孔的石墨烯薄膜。除去末端基团(-F / -OH)后,增加的Ti原子比例可实现更多的假电容反应。同时,嵌入的带孔石墨烯有效地防止了MXene的自重堆积,并形成了高纳米孔连通性网络,能够极大地加速离子迁移并缩短离子和电子的迁移途径。当用作超级电容器的电极材料时,它可以在2 mV s -1 下提供超高的体积电容(1445 F cm -3 ),出色的倍率能力和高质量加载中。此外,组装的对称超级电容器具有出色的体积能量密度(38.6 Wh L -1 ),这是在水性电解质中基于MXene的电极所报道的最高值。这项工作为进一步探索储能设备中的MXene材料开辟了一条新途径。

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