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首页> 外文期刊>ACS applied materials & interfaces >Fiber-Shape Na3V2(PO4)(2)F-3@N-Doped Carbon as a Cathode Material with Enhanced Cycling Stability for Na-Ion Batteries
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Fiber-Shape Na3V2(PO4)(2)F-3@N-Doped Carbon as a Cathode Material with Enhanced Cycling Stability for Na-Ion Batteries

机译:纤维形状Na3v2(PO4)(2)F-3掺杂碳作为阴极材料,具有增强的Na离子电池的循环稳定性

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摘要

To overcome intrinsic low electronic conductance, delicately designed fiber-shape Na3V2(PO4)(2)F-3@N-doped carbon composites (NVPF@C) have been prepared for boosting Na-storage performance. This distinctive interlinked three-dimensional network structure can effectively facilitate electron/Na-ion transportation by decreasing the NVPF particle size to shorten the ionic diffusion paths and introducing a conducting N-doping carbon scaffold to improve electronic conductivity. Benefiting from the favorable structural design and fascinating reaction kinetics, the modified NVPF@C material demonstrates superior sodium-storage performance with 109.5 mAh g(-1) high reversible capacity at a moderate current of 0.1 C, excellent rate tolerance of 78.9 mAh g(-1) at a high rate of 30 C, and gratifying long-term cyclability (87.8% capacity retention after 1000 cycles at 20 C; 83.4% capacity retention after 1500 round trips at a ultrahigh rate of 50 C). The fascinating electrochemical performance remains stable when NVPF@a C was examined as the cathode material for a full cell, suggesting the fiber-shape NVPF@C as one of the most promising applicable materials for sodium-ion batteries. Moreover, the approach of the three-dimensional conductive network by electrospinning is proposed as a strategy of efficiency and promising prospect to enhance the electrochemical property of other materials for sodium-ion batteries.
机译:为了克服内在的低电子电导,精致设计的纤维形状Na3v2(PO4)(2)F-3 @ n掺杂的碳复合材料(NVPF @ C)用于促进Na储存性能。这种独特的相互连接的三维网络结构可以通过降低NVPF粒度来有效地促进电子/ Na离子运输,以缩短离子扩散路径并引入导电的N掺杂碳支架以提高电子导电性。受益于有利的结构设计和迷人的反应动力学,改性的NVPF @ C材料通过109.5mahg(-1)高可逆容量,在0.1℃的中等电流下,优异的78.9 mah g( -1)以30℃的高速率,并欣赏长期可靠性(在20℃的1000次循环后的87.8%的容量保留;在1500次圆形速率下以50℃的超高速率后83.4%的容量保留。当将NVPF @ A C被检查为全牢的阴极材料时,迷人的电化学性能保持稳定,表明纤维形状NVPF @ C作为钠离子电池最有希望的适用材料之一。此外,提出了通过静电纺丝的三维导电网络的方法作为提高钠离子电池的其他材料的电化学性能的效率和有希望的前景。

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  • 来源
    《ACS applied materials & interfaces》 |2020年第23期|共10页
  • 作者单位

    Guangdong Power Grid Co Ltd Elect Power Res Inst Guangzhou 510080 Guangdong Peoples R China;

    South China Univ Technol Sch Environm &

    Energy Guangzhou Key Lab Suiface Chem Energy Mat New Energy Res Inst Guangzhou 510006 Peoples R China;

    Guangdong Power Grid Co Ltd Elect Power Res Inst Guangzhou 510080 Guangdong Peoples R China;

    Guangdong Power Grid Co Ltd Elect Power Res Inst Guangzhou 510080 Guangdong Peoples R China;

    Guangdong Power Grid Co Ltd Elect Power Res Inst Guangzhou 510080 Guangdong Peoples R China;

    Guangdong Power Grid Co Ltd Elect Power Res Inst Guangzhou 510080 Guangdong Peoples R China;

    South China Univ Technol Sch Environm &

    Energy Guangzhou Key Lab Suiface Chem Energy Mat New Energy Res Inst Guangzhou 510006 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    sodium-ion batteries; Na3V2(PO4)(2)F-3; electrospinning; fiber-shape; long-term cycling;

    机译:钠离子电池;Na3v2(PO4)(2)F-3;静电纺丝;纤维状;长期循环;

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