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Partially Reduced Holey Graphene Oxide as High Performance Anode for Sodium-Ion Batteries

机译:部分还原的带孔氧化石墨烯作为钠离子电池的高性能阳极

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The current Na+ storage performance of carbon-based materials is still hindered by the sluggish Na+ ion transfer kinetics and low capacity. Graphene and its derivatives have been widely investigated as electrode materials in energy storage and conversion systems. However, as anode materials for sodium-ion batteries (SIBs), the severe pi-pi restacking of graphene sheets usually results in compact structure with a small interlayer distance and a long ion transfer distance, thus leading to low capacity and poor rate capability. Herein, partially reduced holey graphene oxide is prepared by simple H2O2 treatment and subsequent low temperature reduction of graphene oxide, leading to large interlayer distance (0.434 nm), fast ion transport, and larger Na+ storage space. The partially remaining oxygenous groups can also contribute to the capacity by redox reaction. As anode material for SIBs, the optimized electrode delivers high reversible capacity, high rate capability (365 and 131 mAh g(-1) at 0.1 and 10 A g(-1), respectively), and good cycling performance (163 mAh g(-1) after 3000 cycles at a current density of 2 A g(-1)), which is among the best reported performances for carbon-based SIB anodes.
机译:碳基材料目前的Na +储存性能仍然受Na +离子迁移动力学低和容量低的影响。石墨烯及其衍生物已被广泛研究为能量存储和转换系统中的电极材料。然而,作为钠离子电池(SIB)的负极材料,石墨烯片的严重pi-pi重堆积通常会导致结构紧凑,层间距离小和离子转移距离长,从而导致容量低和倍率性能差。在此,通过简单的H 2 O 2处理和随后的氧化石墨烯的低温还原来制备部分还原的多孔氧化石墨烯,从而导致大的层间距离(0.434nm),快速的离子传输和更大的Na +存储空间。部分剩余的含氧基团还可以通过氧化还原反应来贡献容量。作为用于SIB的阳极材料,优化的电极具有高可逆容量,高倍率容量(分别在0.1和10 A g(-1)时分别为365和131 mAh g(-1))和良好的循环性能(163 mAh g( -1)经过3000次循环后,电流密度为2 A g(-1)),这是碳基SIB阳极报告的最佳性能之一。

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