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首页> 外文期刊>Journal of power sources >A 'two-pronged' strategy: Boosting electrocatalytic oxygen reduction reaction property based on the Ni-MnO synergistic effect and high conductivity of rod-like Ni-MnO/N-C composites prepared via simple solution-free route
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A 'two-pronged' strategy: Boosting electrocatalytic oxygen reduction reaction property based on the Ni-MnO synergistic effect and high conductivity of rod-like Ni-MnO/N-C composites prepared via simple solution-free route

机译:“双管齐下”策略:基于Ni-MNO协同效应和通过简单的溶液 - 无溶液途径制备的棒状Ni-MnO / N-C复合材料的高导电性提高电催化氧还原性能

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摘要

To develop a low-cost and high-efficient electrocatalyst as a substitution of Pt/C for oxygen reduction reaction (ORR) is of great significance. We propose simple "two-pronged" strategy to boost synchronously the electrocatalytic activity and stability via the combination of the active MnO and metallic Ni with the conductive N-doped carbon (N-C) materials. The synergistic effect of active species between MnO and metallic Ni enables Ni-MnO/N-C composites to motivate-boost catalytic activity, the N-C greatly enhances the conductivity and endows Ni-MnO/N-C composites with large surface area for ORR. To our satisfaction, the Ni-MnO/N-C composites exhibits robust electrocatalytic ORR activity with the limiting current density (J) of 6.39 mA cm(-2), the half-wave potential (E-1/2) of 0.81 V vs. RHE and an ideal four-electron transfer pathway, competing to the commercial Pt/C. Furthermore, the Ni-MnO/N-C composites as a cathode in assembled Zn-air battery shows the power density of 179 mW cm(-2), delivers the specific capacity of 702 mA h g(-1) at a discharge current density of 10 mA cm(-2) while utilizing 84% of the theoretical capacity (similar to 835 mA h g(-1)). This work highlights a new feasible strategy to explore an efficient electrocatalyst via synchronously heightening the catalytic activity and conductivity.
机译:为了开发低成本和高效的电催化剂,作为氧还原反应的Pt / C的替代性(ORR)具有重要意义。我们提出了简单的“双管齐下”策略通过活性MNO和金属Ni与导电N掺杂碳(N-C)材料的组合同步地提高电催化活性和稳定性。 MNO和金属Ni之间的活性物质的协同作用使Ni-MnO / N-C复合材料能够激发 - 增强催化活性,N-C大大提高了具有大表面积的导电性和赋予Ni-MnO / N-C复合材料,用于ORR的大表面积。为了我们的满意,Ni-MnO / NC复合材料表现出具有6.39 mA cm(-2)的限制电流密度(j)的鲁棒电催化ORR活性,半波电位(e-1/2)为0.81V与rhe和一个理想的四电子转移途径,竞争商业pt / c。此外,作为组装Zn-空气电池的阴极作为阴极的Ni-MnO / NC复合材料显示为179mW cm(-2)的功率密度,以10的放电电流密度为702 mA Hg(-1)的特定容量。 MA CM(-2),同时利用84%的理论能力(类似于835 mA Hg(-1))。这项工作突出了一种新的可行策略,通过同步地提高催化活性和电导率来探索高效的电催化剂。

著录项

  • 来源
    《Journal of power sources》 |2021年第15期|229330.1-229330.8|共8页
  • 作者单位

    Xinjiang Univ Coll Chem Key Lab Adv Funct Mat Autonomous Reg Key Lab Energy Mat Chem Minist Educ Urumqi 830046 Xinjiang Peoples R China;

    Xinjiang Univ Coll Chem Key Lab Adv Funct Mat Autonomous Reg Key Lab Energy Mat Chem Minist Educ Urumqi 830046 Xinjiang Peoples R China;

    Xinjiang Univ Coll Chem Key Lab Adv Funct Mat Autonomous Reg Key Lab Energy Mat Chem Minist Educ Urumqi 830046 Xinjiang Peoples R China;

    Xinjiang Univ Coll Chem Key Lab Adv Funct Mat Autonomous Reg Key Lab Energy Mat Chem Minist Educ Urumqi 830046 Xinjiang Peoples R China;

    Xinjiang Univ Coll Chem Key Lab Adv Funct Mat Autonomous Reg Key Lab Energy Mat Chem Minist Educ Urumqi 830046 Xinjiang Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Solid-state synthesis; Nanocomposites; Transition metal; Electrocatalysis; Oxygen reduction reaction;

    机译:固态合成;纳米复合材料;过渡金属;电催化;氧还原反应;

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