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Porous conductive interlayer for dendrite-free lithium metal battery

机译:用于树突式的无熔锂金属电池的多孔导电层间

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摘要

Lithium(Li) metal,possessing ultrahigh theoretical capacity and the lowest electrode potential,is regarded as a promising new generation anode material.However,the uncontrollable growth of Li dendrites during cycling process gives rise to problems as capacity decay and short circuit,suppressing the cycling and safety performances of Li metal battery.In this contribution,porous conductive interlayer(PCI),composed of carbon nanofibers(CNFs) and polyisophthaloyl metaphenylene diamine(PMIA),is developed to suppress Li dendrites and stabilize Li metal anode.PCI possesses the excellent conductive ability of CNFs and the preeminent mechanical properties of PMIA at the same time.When Li metal contacts with PCI during cycling process,an equipotential surface forms on their interface,which eliminates the tip effect on Li anode and homogenizes Li-ions flux in combination with the uniform porous structure of PCI.Employed PCI,the LiCu cell exhibits a remarkable cycling stability with a high average Coulombic efficiency of 97.5% for 100 cycles at 0.5 mA cm^(-2).And the LiLiFePO_4 cell exhibits improved rate capability(114.7 mAh g^(-1) at 5.0 C) and enhanced cycling performance(78.9% capacity retention rate over 500 cycles at 1.0 C).This work provides a fresh and effective solving strategy for the problem of dendrites in Li metal battery.
机译:具有超高理论容量和最低电极电位的金属(Li)金属被认为是一个有前途的新一代阳极材料。然而,循环过程中Li Dendrites的无法控制的生长导致容量衰减和短路的问题,抑制了锂金属电池的循环和安全性能。这种贡献,由碳纳米纤维(CNFS)和多异酚酰基亚苯二胺(PMIA)组成的多孔导电层(PCI),以抑制Li Dendrites并稳定Li金属anode.pci拥有CNFS的优异导电能力和PMIA的卓越力学性能同时。当循环过程中与PCI的金属接触时,它们的界面上的等电位表面形成,消除了对Li阳极的尖端效应并均质化Li-离子通量与PCI.Employed PCI的均匀多孔结构组合,Licu细胞具有显着的循环稳定性,具有高平均值在0.5 mA cm ^( - 2)下的100个循环的库仑效率为97.5%。并且Lilifepo_4细胞显示出改善的速率能力(在5.0℃下提高速度能力(114.7mAhg ^( - 1),增强循环性能(78.9%的容量保留率1.0℃下的500个循环)。这项工作为Li金属电池中的枝晶问题提供了一种新鲜有效的解决策略。

著录项

  • 来源
    《能源化学:英文版》 |2021年第002期|P.412-418I0014|共8页
  • 作者单位

    Beijing Key Laboratory for Chemical Power Source and Green Catalysis School of Chemistry and Chemical Engineering Beijing Institute of Technology Beijing 100081 China;

    Beijing Key Laboratory for Chemical Power Source and Green Catalysis School of Chemistry and Chemical Engineering Beijing Institute of Technology Beijing 100081 China;

    Liaoning Engineering Technology Research Center of Supercapacitor Bohai University Jinzhou 121013 Liaoning China;

    Liaoning Engineering Technology Research Center of Supercapacitor Bohai University Jinzhou 121013 Liaoning China;

    Beijing Key Laboratory for Chemical Power Source and Green Catalysis School of Chemistry and Chemical Engineering Beijing Institute of Technology Beijing 100081 China;

    Beijing Key Laboratory for Chemical Power Source and Green Catalysis School of Chemistry and Chemical Engineering Beijing Institute of Technology Beijing 100081 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 工程材料学;
  • 关键词

    Li metal battery; Li dendrites; Porous conductive interlayer; Equipotential surface;

    机译:Li Metal电池;Li Dendrites;多孔导电层间;等电位表面;
  • 入库时间 2022-08-19 04:57:46
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