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MOF nanoleaves as new sacrificial templates for the fabrication of nanoporous Co-Nx/C electrocatalysts for oxygen reductionf

机译:MOF纳米作为新的牺牲模板,用于制备纳米多孔CO-NX / C电催化剂的氧还原电量

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摘要

Although traditional three-dimensional(3D)zeolitic-imidazolate framework(ZIF)particles have been explored as promising precursors for preparing carbon-based electrocatalyst for oxygen reduction reaction(ORR),their natural tendency to agglomerate impedes the exposure of the active sites and significantly reduces their ORR performance.Herein,novel Co/Zn-containing bimetallic ZIF nanoleaves are synthesized by the”shape-transforming method in an aqueous system”,in which the nitrogen atoms in amines form hydrogen bonds with hydrogen atoms from H20 molecules,which induce the formation of sodalite layers to generate the ZIF nanoleaves.By directly pyrolyzing the ZIF nanoleaves,the obtained cobalt-embedded nitrogen-doped mesoporous carbon(Co-N/C)product possesses refined leaf-like two-dimensional(2D)morphologies.Moreover,the obtained 2D catalyst with a high mass loading of cobalt nanoparticles(31.17 wt%)shows an excellent electrocatalytic performance for the ORR in an alkaline electrolyte.The half-wave potential of the Co-N/C catalyst is 0.825 V versus the reversible hydrogen electrode,which is 14 mV more positive than that of the commercial Pt/C(0.811 V).In addition,the resulting zinc-air battery assembled using the Co-N/C air cathode with a liquid electrolyte exhibits both high open-circuit potential(1.446 V)and high energy density(837.5 W h kgzn_1).
机译:虽然传统的三维(3D)沸石 - 咪唑酯框架(ZIF)颗粒被探索为用于制备用于氧还原反应的碳基电催化剂的有前体的前体(ORR),它们对凝聚的自然趋势阻碍了活性位点的暴露并显着地阻碍了曝光降低了它们的ORR性能。Theein,通过“含水体系中的形状转化方法”合成了新型Co / Zn的双金属ZIF纳米,其中胺中的氮原子与来自H20分子的氢原子形成氢键,诱导皂石层的形成产生ZIF纳米物。通过直接热解ZIF纳米物,得到的钴嵌入的氮掺杂介孔碳(CO-N / C)产物具有精制叶状二维(2D)形态。 ,所获得的具有高质量负载钴纳米粒子(31.17wt%)的2D催化剂显示出碱性电解质中的ORR的优异电催化性能.H Co-N / C催化剂的ALF波电位为0.825V,与可逆氢电极相比,比商用Pt / C(0.811 V)更阳性为14mV。此外,所得到的锌空气电池组装使用具有液体电解质的CO-N / C空气阴极,具有高开关电位(1.446V)和高能量密度(837.5WH kgzn_1)。

著录项

  • 来源
    《Nanoscale Horizons》 |2019年第4期|共8页
  • 作者

    Jingjing Li; Wei Xia; Jing Tang;

  • 作者单位

    College of Materials Science and Technology Jiangsu Key Laboratory of Materials and Technology for Energy Conversion Nanjing University of Aeronautics and Astronautics 210016 Nanjing China;

    College of Materials Science and Technology Jiangsu Key Laboratory of Materials and Technology for Energy Conversion Nanjing University of Aeronautics and Astronautics 210016 Nanjing China;

    International Center for Materials Nanoarchitectonics(WPI-MANA) National Institute for Materials Science(NIMS) 1-1 Namiki Tsukuba Ibaraki 305-0044 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;工程材料学;
  • 关键词

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