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Graphene nanowires anchored to 3D graphene foam via self-assembly for high performance Li and Na ion storage

机译:石墨烯纳米线通过自组装固定在3D石墨烯泡沫上,用于高性能Li和Na离子储存

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摘要

Abstract Graphene has been extensively investigated as anode material for Li and Na ion batteries due to its excellent physical and chemical performance. Herein, we report a new member of ‘graphene family’, a reduced graphene nanowire on three-dimensional graphene foam (3DGNW). The novel graphene nanowires were synthesized via a template strategy involving reduction and assembly process of nanosized graphene oxides (nGO), pyrolysis of polystyrene spheres (PS) template and catalytic reaction between GO and PS decomposition products. When evaluated as anodes material for Li and Na ion batteries, the 3DGNW exhibits relatively low discharge-voltage plateau, excellent reversible capacity, rate capability, and durable tolerance. For anode of Na ion batteries, a reversible capacity of more than 301mAhg?1 without capacity fading after 1000 cycles at rate of 1C were achieved. Even at rate of 20C, a high reversible capacity of 200mAhg?1 can be retained. The superior electrochemical performance is ascribed to hierarchical multidimensional graphene architecture, high graphene crystallinity, expansile graphene interlayer distance, and extensively lateral exposed edges/pores, which can promote the electron and ion transport. The realization of assembling reduced graphene sheets to graphene nanowire offers new opportunities for energy storage application of graphene based assembly in future. 展开▼
机译:<![cdata [ 抽象 石墨烯由于其优异的物理和化学性能而被广泛地被广泛地调查了Li和Na离子电池的阳极材料。在此,我们报告了“石墨烯家族”的新成员,在三维石墨烯泡沫(3DGNW)上的一片还原的石墨烯纳米线。通过涉及纳米石墨烯氧化物(NGO)的还原和组装过程的模板策略合成了新的石墨烯纳米线,聚苯乙烯球体(PS)模板和GO和PS分解产物之间的催化反应的热解。当评估为Li和Na离子电池的阳极材料时,3DGNW表现出相对低的放电电压高原,优异的可逆容量,速率能力和耐用的耐受性。对于Na离子电池的阳极,可逆容量超过301 mah g ?1 没有容量衰落1000次循环以1 c的速率。甚至以20 c的速率,高可逆容量为200 mah g ?1 可以保留。卓越的电化学性能归因于分层多维石墨烯架构,高石墨烯结晶度,可膨胀石墨烯层间距离,并且具有广泛的横向暴露的边缘/孔,其可以促进电子和离子传输。将减少的石墨烯片组装到石墨烯纳米线的实现为将来的石墨烯组装的储能应用提供了新的机会。

著录项

  • 来源
    《Nano Energy》 |2017年第2017期|共10页
  • 作者单位

    School of Chemistry and Chemical Engineering and ‖Center for Composite Materials and Structure Harbin Institute of Technology;

    Division of Physics and Applied Physics Nanyang Technological University;

    School of Chemistry and Chemical Engineering and ‖Center for Composite Materials and Structure Harbin Institute of Technology;

    School of Chemistry and Chemical Engineering and ‖Center for Composite Materials and Structure Harbin Institute of Technology;

    School of Chemistry and Chemical Engineering and ‖Center for Composite Materials and Structure Harbin Institute of Technology;

    School of Chemistry and Chemical Engineering and ‖Center for Composite Materials and Structure Harbin Institute of Technology;

    Division of Physics and Applied Physics Nanyang Technological University;

    Division of Physics and Applied Physics Nanyang Technological University;

    School of Chemistry and Chemical Engineering and ‖Center for Composite Materials and Structure Harbin Institute of Technology;

    State Key Laboratory of Advanced Technology for Materials Synthesis and Processing Wuhan University of Technology;

    School of Chemistry and Chemical Engineering and ‖Center for Composite Materials and Structure Harbin Institute of Technology;

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

    Graphene nanowires; 3D all-graphene electrode; High performance; Li and Na ion batteries;

    机译:石墨烯纳米线;3D全石墨烯电极;高性能;李和NA离子电池;

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