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An Ingenious Strategy to Integrate Multiple Electrocatalytically Active Components within a Well-Aligned Nitrogen-Doped Carbon Nanotube Array Electrode for Electrocatalysis

机译:一种巧妙的策略,将多种电催化活性组分整合在良好的对准的氮气掺杂碳纳米管阵列电极中,用于电常见

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摘要

In this paper, an ingenious strategy was developed to construct a well-aligned nitrogen-doped carbon nanotube (NCNT) array electrode integrated with multiple electrocatalytically active components of single cobalt atoms with CoN_(4) configuration (CoSAs), cobalt nanodots (Co), and molybdenum- or tungsten-carbide (WC or MoC) for hydrogen evolution reaction (HER). The well-aligned nitrogen doped carbon nanotube array is fabricated via an in situ NCNT growth process using a MO_(4) unit-exchanged lamellar cobalt hydroxide–nitrate MO_(4)–CoLHN (M = Mo or W) as both catalytic species and precursor and dicyandiamide as nitrogen/carbon source under a high-temperature carbonization process. The electrocatalytic performance with low overpotentials of 23 and 47 mV at 10 mA cm~(–2) in acidic electrolyte can be achieved in [email?protected]/CC and [email?protected]/CC electrodes, respectively. Moreover, these electrodes also show good stability, which could maintain 30 h of stable performance. Coupling various characterizations with density functional theory calculations, it is disclosed that the synergistic coupling interactions exist among NCNTs, CoSAs, Co, and MC as well as N-dopants, facilitating effective regulations on exposed active sites, d-band center, vectorial electron transfer from Co and MC to NCNTs, and enhanced electrical conductivity derived from NCNTs array, which may account for the significant promotion of HER performance.
机译:None

著录项

  • 来源
    《ACS catalysis》 |2021年第7期|共17页
  • 作者单位

    School of Chemistry and Chemical Engineering Inner Mongolia University Inner Mongolia Engineering and Technology Research Center for Catalytic Conversion and Utilization of Carbon Resource Molecules &

    Inner Mongolia Key Lab of Nanoscience and Nanotechno;

    School of Chemistry and Chemical Engineering Inner Mongolia University Inner Mongolia Engineering and Technology Research Center for Catalytic Conversion and Utilization of Carbon Resource Molecules &

    Inner Mongolia Key Lab of Nanoscience and Nanotechno;

    School of Chemistry and Chemical Engineering Inner Mongolia University Inner Mongolia Engineering and Technology Research Center for Catalytic Conversion and Utilization of Carbon Resource Molecules &

    Inner Mongolia Key Lab of Nanoscience and Nanotechno;

    School of Chemistry and Chemical Engineering Inner Mongolia University Inner Mongolia Engineering and Technology Research Center for Catalytic Conversion and Utilization of Carbon Resource Molecules &

    Inner Mongolia Key Lab of Nanoscience and Nanotechno;

    School of Chemistry and Chemical Engineering Inner Mongolia University Inner Mongolia Engineering and Technology Research Center for Catalytic Conversion and Utilization of Carbon Resource Molecules &

    Inner Mongolia Key Lab of Nanoscience and Nanotechno;

    School of Chemistry and Chemical Engineering Inner Mongolia University Inner Mongolia Engineering and Technology Research Center for Catalytic Conversion and Utilization of Carbon Resource Molecules &

    Inner Mongolia Key Lab of Nanoscience and Nanotechno;

    School of Chemistry and Chemical Engineering Inner Mongolia University Inner Mongolia Engineering and Technology Research Center for Catalytic Conversion and Utilization of Carbon Resource Molecules &

    Inner Mongolia Key Lab of Nanoscience and Nanotechno;

    School of Chemistry and Chemical Engineering Inner Mongolia University Inner Mongolia Engineering and Technology Research Center for Catalytic Conversion and Utilization of Carbon Resource Molecules &

    Inner Mongolia Key Lab of Nanoscience and Nanotechno;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
  • 关键词

    nitrogen-doped carbon nanotubes; cobalt nanodots; molybdenum/tungsten carbides; single cobalt atoms; hydrogen evolution reaction;

    机译:氮掺杂碳纳米管;钴纳米棒;钼/钨碳化物;单钴原子;氢进化反应;
  • 入库时间 2022-08-20 17:33:17

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