首页> 中文期刊> 《能源化学:英文版》 >Hollow cobalt oxide nanoparticles embedded in nitrogen-doped carbon nanosheets as an efficient bifunctional catalyst for Zn–air battery

Hollow cobalt oxide nanoparticles embedded in nitrogen-doped carbon nanosheets as an efficient bifunctional catalyst for Zn–air battery

         

摘要

Rational design of low-cost, highly electrocatalytic activity, and stable bifunctional electrocatalysts for oxygen reduction reaction(ORR) and oxygen evolution reaction(OER) has been a great significant for metal–air batteries. Herein, an efficient bifunctional electrocatalyst based on hollow cobalt oxide nanoparticles embedded in nitrogen-doped carbon nanosheets(Co/N-Pg) is fabricated for Zn–air batteries. A lowcost biomass peach gum, consisting of carbon, oxygen, and hydrogen without other heteroatoms, was used as carbon source to form carbon matrix hosting hollow cobalt oxide nanoparticles. Meanwhile, the melamine was applied as nitrogen source and template precursor, which can convert to carbon-based template graphitic carbon nitride by polycondensation process. Owing to the unique structure and synergistic effect between hollow cobalt oxide nanoparticles and Co-N-C species, the proposal Co/N-Pg catalyst displays not only prominent bifunctional electrocatalytic activities for ORR and OER, but also excellent durability. Remarkably, the assembled Zn–air battery with Co/N-Pg air electrode exhibited a low discharge-charge voltage gap(0.81 V at 50 mA cm^-2) and high peak power density(119 mW cm^-2) with long-term cycling stability. This work presents an effective approach for engineering transition metal oxides and nitrogen modified carbon nanosheets to boost the performance of bifunctional electrocatalysts for Zn–air battery.

著录项

  • 来源
    《能源化学:英文版》 |2019年第6期|P.59-66|共8页
  • 作者单位

    [1]School of Chemistry and Chemical Engineering;

    Institute for Energy Research;

    Jiangsu University;

    Zhenjiang 212013;

    Jiangsu;

    China;

    [1]School of Chemistry and Chemical Engineering;

    Institute for Energy Research;

    Jiangsu University;

    Zhenjiang 212013;

    Jiangsu;

    China;

    [1]School of Chemistry and Chemical Engineering;

    Institute for Energy Research;

    Jiangsu University;

    Zhenjiang 212013;

    Jiangsu;

    China;

    [2]Jiangsu Key Laboratory for Environment Functional Materials;

    School of Environmental Science and Engineering;

    Suzhou University of Science and Technology;

    Suzhou 215009;

    Jiangsu;

    China;

    [1]School of Chemistry and Chemical Engineering;

    Institute for Energy Research;

    Jiangsu University;

    Zhenjiang 212013;

    Jiangsu;

    China;

    [1]School of Chemistry and Chemical Engineering;

    Institute for Energy Research;

    Jiangsu University;

    Zhenjiang 212013;

    Jiangsu;

    China;

    [2]Jiangsu Key Laboratory for Environment Functional Materials;

    School of Environmental Science and Engineering;

    Suzhou University of Science and Technology;

    Suzhou 215009;

    Jiangsu;

    China;

    [3]School of Chemistry;

    Physics and Mechanical Engineering;

    Queensland University of Technology;

    Brisbane;

    QLD 4001;

    Australia;

    [1]School of Chemistry and Chemical Engineering;

    Institute for Energy Research;

    Jiangsu University;

    Zhenjiang 212013;

    Jiangsu;

    China;

    [3]School of Chemistry;

    Physics and Mechanical Engineering;

    Queensland University of Technology;

    Brisbane;

    QLD 4001;

    Australia;

  • 原文格式 PDF
  • 正文语种 CHI
  • 中图分类 操作系统;
  • 关键词

    Zn-air batteries; Oxygen reduction reaction; Oxygen evolution reaction; Nitrogen-doped carbon nanosheets; Cobalt oxides;

    机译:锌空气电池氧还原反应析氧反应氮掺杂碳纳米片氧化钴;
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