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Designer uniform Li plating/stripping through lithium–cobalt alloying hierarchical scaffolds for scalable high-performance lithium-metal anodes

机译:设计者均匀锂电镀/剥离锂 - 钴合金化等级支架,用于可伸缩的高性能锂金属阳极

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摘要

Lithium metal anodes are of great interest for advanced high-energy density batteries such as lithiumair, lithium-sulfur and solid-state batteries, due to their low electrode potential and ultra-high theoretical capacity. There are, however, several challenges limiting their practical applications, which include low coulombic efficiency, the uncontrollable growth of dendrites and poor rate capability. Here, a rational design of 3D structured lithium metal anodes comprising of in-situ growth of cobalt-decorated nitrogen-doped carbon nanotubes on continuous carbon nanofibers is demonstrated via electrospinning.The porous and free-standing scaffold can enhance the tolerance to stresses resulting from the intrinsic volume change during Li plating/stripping, delivering a significant boost in both charge/discharge rates and stable cycling performance. A binary Co-Li alloying phase was generated at the initial discharge process, creating more active sites for the Li nucleation and uniform deposition. Characterization and density functional theory calculations show that the conductive and uniformly distributed cobalt-decorated carbon nanotubes with hierarchical structure can effectively reduce the local current density and more easily absorb Li atoms, leading to more uniform Li nucleation during plating. The current work presents an advance on scalable and cost-effective strategies for novel electrode materials with 3D hierarchical microstructures and mechanical flexibility for lithium metal anodes.
机译:由于它们的低电极电位和超高理论能力,锂金属阳极对先进的高能密度电池(如锂锂,锂 - 硫和固态电池)非常感兴趣。然而,有几种挑战限制了它们的实际应用,包括低库仑效率,树突的无法控制的增长和差价不良。这里,通过静电纺丝证明了包括在连续碳纳米纤维上的钴装饰的氮掺杂碳纳米管的原位生长的3D结构锂金属阳极设计的理性设计。多孔和独立的支架可以增强对由此产生的应力的耐受性在Li电镀/汽提时的固有体积变化,在充电/放电速率和稳定的循环性能下提供显着提升。在初始放电过程中产生二元共锂合金相,为锂成核和均匀沉积产生更多活性位点。表征和密度泛函理论计算表明,具有等级结构的导电和均匀分布的钴装饰的碳纳米管可以有效地降低局部电流密度,更容易吸收锂原子,导致电镀过程中的更均匀的锂成核。目前的工作提出了具有3D层次微观结构的新型电极材料的可扩展和经济高效的策略以及用于锂金属阳极的机械柔韧性。

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  • 来源
    《能源化学:英文版》 |2021年第001期|P.385-392I0013|共9页
  • 作者单位

    School of Transportation Science and Engineering Beihang University Beijing 100191 China;

    School of Chemistry and Materials Science Jiangsu Normal University Xuzhou 221116 Jiangsu China;

    Imperial College London Sough Kensington Campus SW72AZ London United KingdomState Key Laboratory of Chemical Engineering and School of Chemical Engineering East China University of Science and Technology Shanghai 200237 China;

    Imperial College London Sough Kensington Campus SW72AZ London United Kingdom;

    Imperial College London Sough Kensington Campus SW72AZ London United Kingdom;

    Imperial College London Sough Kensington Campus SW72AZ London United Kingdom;

    Imperial College London Sough Kensington Campus SW72AZ London United Kingdom;

    School of Transportation Science and Engineering Beihang University Beijing 100191 China;

    School of Transportation Science and Engineering Beihang University Beijing 100191 China;

    Imperial College London Sough Kensington Campus SW72AZ London United Kingdom;

    State Key Laboratory of Chemical Engineering and School of Chemical Engineering East China University of Science and Technology Shanghai 200237 China;

    School of Chemistry and Materials Science Jiangsu Normal University Xuzhou 221116 Jiangsu China;

    Imperial College London Sough Kensington Campus SW72AZ London United Kingdom;

    Imperial College London Sough Kensington Campus SW72AZ London United Kingdom;

    School of Transportation Science and Engineering Beihang University Beijing 100191 China;

    School of Transportation Science and Engineering Beihang University Beijing 100191 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 金属学与热处理;
  • 关键词

    Li metal anode; Mixed conductor interface; 3D porous host; Dendrite free; Metal-carbon nanofibers;

    机译:Li金属阳极;混合导体界面;3D多孔宿主;树突自由;金属 - 碳纳米纤维;
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