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Morphological and structure dual modulation of cobalt-based layer double hydroxides by Ni doping and 2-methylimidazole inducting as bifunctional electrocatalysts for overall water splitting

机译:镍掺杂和2-甲基咪唑诱导的双功能电催化剂对钴基层状双氢氧化物的形貌和结构双重调控

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摘要

Developing bifunctional electrocatalysts of high-efficiency and new structures for overall water splitting are highly desirable and ongoing challenge. Herein, CoxNi10-xlayer double hydroxide salts with controllable structure and morphology induced by 2-methylimidazole to derive ZIF-67 on Ni/Fe foam is reported. The as-prepared 3D CoxNi10-xlayer double hydroxide microspheres are constructed by self-assembly of 2D nanoflake and 1D nanorod with ZIF-67 particles due to the double influence of Ni and 2-methylimidazole. It is discovered that the Ni and 2-methylimidazole can simultaneously modulate morphology and structure of CoxNi10-xlayer double hydroxide to distinctly increase the electrochemical active surface area for exposing more accessible active sites. Notably, the 3D microsphere heterogeneous catalysis of the self-assembly combines the merits of low dimensions (1D and 2D) materials, providing high structural void porosity and fast charge transport channels. Particularly, the Co7Ni3layer double hydroxide salts@ZIF-67/Ni/Fe foam exhibits the highest electrocatalytic activity with the lower overpotentials of 260 and 165 mV toward oxygen evolution reaction and hydrogen evolution reaction at current density of 10 mA cm−2, respectively. The outstanding activity originates from the strong electronic coupling between the 3D microsphere and ZIF-67. This work can bring a new prospect for fabricating highly-active and new structure electrocatalysts.
机译:开发高效率的双功能电催化剂和用于整体水分解的新结构是非常需要且持续的挑战。在本文中,报道了由2-甲基咪唑诱导的在Ni / Fe泡沫上诱导ZIF-67的具有可控制的结构和形态的CoxNi 10-双层氢氧化物盐。制备的3D CoxNi10-双层双氢氧化物微球是在Ni和2-甲基咪唑的双重影响下,通过2D纳米片和1D纳米棒与ZIF-67粒子的自组装而构建的。发现Ni和2-甲基咪唑可同时调节CoxNi10-x层双氢氧化物的形态和结构,以显着增加电化学活性表面积,以暴露更多可及的活性位点。值得注意的是,自组装的3D微球非均相催化结合了低尺寸(1D和2D)材料的优点,提供了高结构孔隙率和快速的电荷传输通道。特别是,Co7Ni3层双氢氧化物盐@ ZIF-67 / Ni / Fe泡沫在电流密度为10 mA cm-2时,对氧气析出反应和氢气析出反应的电势最高,分别为260和165 mV。出色的活动源自3D微球与ZIF-67之间的强电子耦合。这项工作可以为制备高活性和新型结构的电催化剂带来新的前景。

著录项

  • 来源
    《Journal of power sources》 |2018年第1期|172-182|共11页
  • 作者单位

    School of Chemistry and Chemical Engineering, Southeast University, Jiangsu Optoelectronic Functional Materials and Engineering Laboratory;

    School of Chemistry and Chemical Engineering, Southeast University, Jiangsu Optoelectronic Functional Materials and Engineering Laboratory;

    School of Chemistry and Chemical Engineering, Southeast University, Jiangsu Optoelectronic Functional Materials and Engineering Laboratory;

    Key Laboratory of Advanced Textile Materials and Manufacturing Technology and Engineering Research Center for Eco-Dyeing & Finishing of Textiles, Ministry of Education, Zhejiang Sci-Tech University;

    School of Chemistry and Chemical Engineering, Southeast University, Jiangsu Optoelectronic Functional Materials and Engineering Laboratory;

    School of Chemistry and Chemical Engineering, Southeast University, Jiangsu Optoelectronic Functional Materials and Engineering Laboratory;

    School of Chemistry and Chemical Engineering, Southeast University, Jiangsu Optoelectronic Functional Materials and Engineering Laboratory;

  • 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

    CoxNi10-xLHSs@ZIF-67/NFF; 3D microspheres structure; Electrochemical catalysis; Overall water splitting;

    机译:CoxNi10-xLHSs @ ZIF-67 / NFF;3D微球结构;电化学催化;总水分解;

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