Nitrogen-carbon-encapsulated Fe3C nanoparticles as highly efficient earth-abundant oxygen reduction electrocatalysts氮碳包封Fe3C纳米颗粒作为高效富氧还原电催化剂

被引:0
|
作者
Cuiping Wang
Zhi Li
Jie Lei
Song Li
Stijn F. L. Mertens
Jinsong Hu
机构
[1] Anhui University of Science and Technology,School of Chemical Engineering, Anhui Province Key Laboratory of Specialty Polymers
[2] Lancaster University,Department of Chemistry, Energy Lancaster and Materials Science Lancaster
[3] Hefei Comprehensive National Science Center,Institute of Energy
来源
Science China Materials | 2024年 / 67卷
关键词
metal-organic frameworks; carbon nanotubes; N-doped carbon matrix; oxygen reduction reaction; Zn-air battery;
D O I
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中图分类号
学科分类号
摘要
The design and synthesis of the highly active metal-organic framework (MOF)-based catalysts open new avenues to facilitate the kinetically unfavorable oxygen reduction reaction (ORR). In this paper, we elucidate the design and fabrication of an efficient electrocatalyst with a novel structure for the enhancement of the ORR performance by decorating the surface of the ZIF-8 precursor with ferrocene formic acid, followed by a two-step carbonization process, which is critical for the encapsulation of pyrolytic Fe3C nanoparticles (NPs) into carbon nanotubes (CNTs) and the isolation of Fe single atoms onto an N-doped carbon (NC) matrix. Moreover, the relative Fe content is vital to optimize the ORR performance of the catalysts. The resulting Fe3C@CNT/NC-M catalyst has an optimized structure. It shows great long-term stability and excellent electrocatalytic ORR performance in alkaline solution, with the half-wave potential and limiting current reaching 0.941 V and 6.31 mA cm−2, respectively. Furthermore, the electrocatalyst has a strong tolerance to and good stability in a methanol solution. The Fe3C@CNT/NC-M zinc-air battery delivers a large open-circuit potential of 1.525 V, a peak power density of 348 mW cm−2 at 420 mA cm−2, and a maximum capacity of 843 mA h gZn−1 at 10 mA cm−2. Thus, this synthetic strategy provides a promising pathway toward constructing MOF-based electrocatalytic materials with effective and stable ORR performance.
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页码:762 / 770
页数:8
相关论文
共 31 条
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    Wang, Cuiping
    Li, Zhi
    Lei, Jie
    Li, Song
    Mertens, Stijn F. L.
    Hu, Jinsong
    [J]. SCIENCE CHINA-MATERIALS, 2024, 67 (03) : 762 - 770
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    汪翠萍
    李智
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    Stijn F.L.Mertens
    胡劲松
    [J]. Science China Materials, 2024, (03) : 762 - 770
  • [3] 氮碳包封Fe3C纳米颗粒作为高效富氧还原电催化剂(英文)<iclass="icon-zqcb"></i>
    汪翠萍
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    [J]. Science China(Materials)., 2024, 67 (03) - 770
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