首页> 外文期刊>Advanced Functional Materials >Pulverizing Fe_2O_3 Nanoparticles for Developing Fe_3C/N-Codoped Carbon Nanoboxes with Multiple Polysulfide Anchoring and Converting Activity in Li-S Batteries
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Pulverizing Fe_2O_3 Nanoparticles for Developing Fe_3C/N-Codoped Carbon Nanoboxes with Multiple Polysulfide Anchoring and Converting Activity in Li-S Batteries

机译:粉碎Fe_2O_3纳米颗粒用于用多硫化物锚固和Li-S电池转化活性的Fe_3C / N-划分的碳纳米氧化剂

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摘要

Sluggish redox kinetics, shuttle effect, poor conductivity, and large volume change of sulfur limit the practical applications of lithium-sulfur batteries. Hollow, porous, and necklace-like Fe3C/N-codoped carbon nanoboxes (Fe3C/NC) connected by N-doped carbon (NC) nanofibers are designed by pulverizing Fe2O3 embedded in polyacrylonitrile (PAN) fibers to produce multifunctional sulfur hosts, which exhibit multiple polysulfide anchoring and catalytic conversion activities. Experimental and first-principles density functional theory studies reveal that the uniformly distributed Fe3C and N units in the nanoboxes can significantly suppress the polysulfide shuttle effect. The conversion of polysulfides (LiPSs) to Li2S is catalyzed during discharge. The process relies on the fast electron transfer through the NC nanofibers and facilitated Li+ diffusion through the porous nanobox shells. The structural characteristics ("boxes in fibers") of the nanoboxes influence the high sulfur loading and tolerance of volume variation of LiPSs, resulting in the synergistic catalysis of the redox reactions. A high capacity of 645 mAh g(-1) after 240 cycles at 1 C, a high capacity of 712 mAh g(-1) at a high sulfur loading of 5 mg cm(-2) after 100 cycles at 0.2 C, and an enhanced areal capacity of 3.6 mAh cm(-2) are demonstrated.
机译:氧化还原动力学,梭效果,导电性差,硫磺电池的实际应用,梭效果,差劲和大量变化。通过N-掺杂碳(NC)纳米纤维连接的中空,多孔和项链的Fe3C / N-编号碳纳米氧氧氧氧氧化碳氧化碳(Fe3C / NC)通过嵌入聚丙烯腈(PAN)纤维中的粉碎Fe2O3以产生多官能硫磺宿主多种多硫化物锚固和催化转化活性。实验和第一原理密度函数理论研究表明,纳米氧氧化物中均匀分布的Fe3c和n单位可以显着抑制多硫化物梭效果。在放电期间催化多硫化物(唇缘)至Li2s的转化。该方法依赖于通过NC纳米纤维的快速电子传递,并通过多孔纳米氧可氧化壳促进Li +扩散。纳米框的结构特征(“纤维盒”)影响嘴唇的高硫负荷和体积变化的耐受性,导致氧化还原反应的协同催化。在1℃下240次循环后,高容量为645mAhg(-1),在0.2℃的100次循环后,高容量为712mAhg(-1),在5mg cm(-2)的高硫加载下,证明了3.6mAhcm(-2)的增强的成分容量。

著录项

  • 来源
    《Advanced Functional Materials》 |2021年第18期|2011249.1-2011249.11|共11页
  • 作者单位

    Dalian Univ Technol Dept Chem Engn State Key Lab Fine Chem Dalian 116024 Peoples R China;

    Dalian Univ Technol Dept Chem Engn State Key Lab Fine Chem Dalian 116024 Peoples R China;

    Dalian Univ Technol Dept Chem Engn State Key Lab Fine Chem Dalian 116024 Peoples R China;

    Univ Texas Austin Mat Sci & Engn Program Austin TX 78712 USA|Univ Texas Austin Dept Mech Engn Austin TX 78712 USA;

    Dalian Univ Technol Dept Chem Engn State Key Lab Fine Chem Dalian 116024 Peoples R China;

    Dalian Univ Technol Dept Chem Engn State Key Lab Fine Chem Dalian 116024 Peoples R China;

    Dalian Univ Technol Dept Chem Engn State Key Lab Fine Chem Dalian 116024 Peoples R China;

    Univ Texas Austin Mat Sci & Engn Program Austin TX 78712 USA|Univ Texas Austin Dept Mech Engn Austin TX 78712 USA;

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

    Fe; C-3; fibers; Li#8208; S batteries; membranes; nanoboxes;

    机译:Fe;C-3;纤维;LI-S电池;膜;纳米氧化物;

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