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Mo2C-embedded biomass-derived honeycomb-like nitrogen-doped carbon nanosheet/graphene aerogel films for highly efficient electrocatalytic hydrogen evolution

机译:MO2C-嵌入生物质衍生的蜂窝状氮掺杂碳纳米液/石墨烯气凝胶薄膜,用于高效电催化氢气进化

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摘要

Honeycomb-like Mo2C@nitrogen-doped carbon nanosheet/graphene (Mo2C@N-DC/G) aerogel films were synthesized successfully by dissolution and coagulation of chitin and graphene oxide, and subsequent simultaneous carbonization of chitin and carbothermal reduction of hexaammonium molybdate. The resulting Mo2C@N-DC/G aerogel films exhibited homogeneous interconnected open-cell architectures, and the Mo2C nanoparticles were homogeneously embedded within a chitin/graphene oxide aerogel derived 3D highly conductive N-DC/G nanonetwork. Benefitting from the unique three-dimensional honeycomb-like architecture and characteristics with excellent electron transportation, abundant active sites, strong interaction between Mo2C nanocrystals and N-DC/G frameworks, the as-prepared catalyst exhibited remarkable catalytic activity and endurance for hydrogen evolution reaction (HER). The optimized Mo2C@N-DC/G electrocatalyst exhibits excellent HER electrocatalytic activity with a low overpotential of 107 mV to achieve a cathodic current density of 10 mA cm(-2) and a small Tafel slope of 65.8 mV dec(-1) in 0.5 M H2SO4 solution. Moreover, it also displays outstanding long-term electrochemical stability, exhibiting no significant decay after 1500 cycles and 15 h of continuous testing at fixed overpotentials. This work will illuminate an entirely new avenue for exploring various low-cost, high-performance self-supported electrode materials for various electrochemical energy conversion and storage applications.
机译:通过溶解和凝固丁蛋白和石墨烯氧化物成功合成蜂窝状的MO2C @氮掺杂的MO2C @氮掺杂的碳纳米片/石墨烯(MO2C @ N-DC / G)气凝胶膜,以及随后的甲蛋白和氯化钙的碳水化合物的同时碳化和碳水钼酸盐的碳化降低。所得MO2C @ N-DC / G气凝胶膜表现出均匀互连的开放式电池架构,并且MO2C纳米颗粒在几丁质/石墨烯氧化物气凝胶衍生的3D高导电N-DC / G纳米纳米内均匀地嵌入。受益于独特的三维蜂窝状架构和特点,具有优异的电子传输,丰富的活性位点,MO2C纳米晶体和N-DC / G骨架之间的强相互作用,AS制备的催化剂表现出显着的催化活性和氢化反应的耐久性(她)。优化的MO2C @ N-DC / G电催化剂具有优异的电催化活性,具有107mV的低过电位,以实现10 mA cm(-2)的阴极电流密度,并且在65.8 mV DEC(-1)中的小TAFEL斜率。 0.5米H2SO4溶液。此外,它还显示出优异的长期电化学稳定性,在1500次循环后没有显着衰减,并且在固定的过电位上连续测试15小时。这项工作将阐明一个完全新的途径,用于探索各种低成本,高性能的自支撑电极材料,用于各种电化学能量转换和储存应用。

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  • 来源
    《New Journal of Chemistry》 |2020年第3期|共10页
  • 作者单位

    Tangshan Univ Dept Environm &

    Chem Engn Tangshan 063000 Peoples R China;

    Beihang Univ Sch Mat Sci &

    Engn Minist Educ Key Lab Aerosp Adv Mat &

    Performance Beijing 100191 Peoples R China;

    Tangshan Univ Dept Environm &

    Chem Engn Tangshan 063000 Peoples R China;

    Tangshan Univ Dept Environm &

    Chem Engn Tangshan 063000 Peoples R China;

    Beihang Univ Sch Mat Sci &

    Engn Minist Educ Key Lab Aerosp Adv Mat &

    Performance Beijing 100191 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

  • 入库时间 2022-08-19 17:34:40

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