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首页> 外文期刊>Materials Research Bulletin >Efficient ORR activity of N-doped porous carbon encapsulated cobalt electrocatalyst derived from a novel bimetal-organic framework
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Efficient ORR activity of N-doped porous carbon encapsulated cobalt electrocatalyst derived from a novel bimetal-organic framework

机译:N掺杂多孔碳包封的钴电催化剂的高效ORR活性衍生自新款双金属有机框架

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摘要

Transition metal nitrogen-doped carbon catalysts have been feasible substitutes for Pt-based electrocatalysts for oxygen reduction reaction (ORR). Herein, porous cobalt N-doped carbon materials with core-shell nanostructure were synthesized by direct carbonization of bimetal-organic framework CoxZn100-x(adeninate)(4)(biphenyldicarboxylate)(6) (x = 0, 3, 5, 8) precursors at various temperatures (800, 900, 1000 degrees C) in Ar atmosphere. The as-prepared catalysts present core-shell nanostructure and highly graphitic hollow carbon-ring structure. Meanwhile, Co nanoparticles are evenly distributed in the nitrogen-doped carbon matrix. The effects of different molar ratios of Co/Zn and pyrolysis temperatures on ORR catalytic performance were evaluated. After replacement of 5 % Zn in the precursor by Co, the Co-5-N-C-900 exhibited superior oxygen reduction activity to that of 20 wt% commercial Pt/C catalyst in 0.1 M KOH, as evidenced by higher half-wave potential (0.86 V vs. 0.85 V) and diffusion-limited current density (-5.79 mA cm(-2) vs.-5.26 mA cm(-2)) vs. RHE. Additionally, the catalyst has long-time stability than that of Pt/C catalyst. Co core-shell nanostructure, large surface area, porous structure and Co-Nx active sites of Co-5-N-C-900 were beneficial to the oxygen reduction property, which enlarged the contact area between catalyst and oxygen molecules, exposed sufficient active sites, and elevated mass diffusion and electron transfer rates. Overall, this study provides an appropriate strategy for the synthesis and application of bimetal-organic framework-derived transition metal nitrogen-doped carbon materials as oxygen reduction electrocatalysts.
机译:过渡金属氮掺杂碳催化剂对氧还原反应(ORR)的PT基电催化剂是可行的替代品。在此,通过双金属 - 有机框架COXZN100-X(腺苷)(4)(Biphyldicarboxty)(6)(X = 0,3,5,8),通过直接碳化合成具有核 - 壳纳米结构的多孔钴N-掺杂碳材料。(X = 0,3,5,8)在AR气氛中的各种温度(800,900,1000℃)的前体。制备的催化剂存在核 - 壳纳米结构和高石墨中空碳环结构。同时,CO纳米颗粒在氮掺杂碳基质中均匀分布。评估了Co / Zn和热解温度的不同摩尔比对ORR催化性能的影响。在通过CO的前体中更换5%Zn之后,CO-5-NC-900在0.1M KOH中表现出优异的氧还原活性在0.1M KOH中的20wt%商业Pt / C催化剂中,如较高的半波电位所证明的( 0.86 V与0.85 V)和扩散限​​制电流密度(-5.79 mA cm(-2)vs.-5.26 mA cm(-2))与RHE。另外,催化剂具有比Pt / C催化剂的长时间稳定性。 CO-5-NC-900的大表面积,多孔结构和CO-NX活性位点对氧气还原性能有益,该性能扩大了催化剂和氧分子之间的接触面积,暴露了足够的活性位点,和升高的质量扩散和电子传递速率。总体而言,该研究提供了合成和应用双金属有机骨架衍生的过渡金属氮掺杂碳材料作为氧还原电催化剂的适当策略。

著录项

  • 来源
    《Materials Research Bulletin》 |2021年第6期|111237.1-111237.8|共8页
  • 作者单位

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

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

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

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

    Xinjiang Univ Key Lab Adv Funct Mat Inst Appl Chem Key Lab Energy Mat Chem Minist Educ Coll Chem 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

    Oxygen reduction reaction; Electrocatalyst; Metal-organic framework; Nitrogen-doped carbon;

    机译:氧还原反应;电催化剂;金属 - 有机框架;氮掺杂碳;

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