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Cobalt-doped edge-rich MoS_2itrogenated graphene composite as an electrocatalyst for hydrogen evolution reaction

机译:钴掺杂富边缘的MoS_2 /氮化石墨烯复合材料作为析氢反应的电催化剂

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摘要

Co-doped MoS_2itrogenated graphene composite has been successfully fabricated through a facile hydrothermal method and is investigated as an electrocatalyst for hydrogen evolution reaction (HER). The results reveal that Co~2+ ions have been successfully incorporated into M0S2 lattice which can give rise to structural strain and dislocation. As a result, the Co-doped MoS_2 nanosheets are characteristic of few layers (3-6 layers) and abundant exposed active edges. Meanwhile, Co-doped MoS_2 nanosheets are well implanted into the nitrogen-doped graphene networks to form robust composite. When evaluated as a catalyst for HER, the obtained composite demonstrates superior electrocatalytic activities towards HER including low onset potential (~90 mV), large cathodic current density and small Tafel slope of 59 mV dec~(-1). It is believed that the desirable catalytic properties can be credited to the unique microstructures including few-layer features, plentiful exposed active sites as well as intimate integration with highly electroconductive nitrogenated graphene.
机译:通过简便的水热法成功地制备了共掺杂的MoS_2 /氮化石墨烯复合材料,并对其进行了研究,并将其作为制氢反应(HER)的电催化剂。结果表明,Co〜2 +离子已经成功地掺入到M0S2晶格中,从而引起结构应变和位错。结果,Co-掺杂的MoS_2纳米片的特征在于很少的层(3-6层)和丰富的暴露的活性边缘。同时,将共掺杂的MoS_2纳米片很好地注入到氮掺杂的石墨烯网络中,以形成坚固的复合材料。当评估为HER的催化剂时,所得复合材料表现出对HER的优异电催化活性,包括低的起始电位(〜90 mV),大的阴极电流密度和59 mV dec〜(-1)的小Tafel斜率。据信,期望的催化性能可以归因于独特的微观结构,包括数层特征,大量暴露的活性位点以及与高导电性氮化石墨烯的紧密结合。

著录项

  • 来源
    《Materials Science and Engineering》 |2016年第10期|30-38|共9页
  • 作者单位

    School of Chemistry and Chemical Engineering, Institute of Physical Chemistry, Development Center for New Materials Engineering & Technology in Universities of Guangdong, Lingnan Normal University, Zhanjiang 524048, PR China,Department of Chemistry, Zhejiang University, Hangzhou 310027, PR China;

    School of Chemistry and Chemical Engineering, Institute of Physical Chemistry, Development Center for New Materials Engineering & Technology in Universities of Guangdong, Lingnan Normal University, Zhanjiang 524048, PR China;

    School of Chemistry and Chemical Engineering, Institute of Physical Chemistry, Development Center for New Materials Engineering & Technology in Universities of Guangdong, Lingnan Normal University, Zhanjiang 524048, PR China;

    School of Chemistry and Chemical Engineering, Institute of Physical Chemistry, Development Center for New Materials Engineering & Technology in Universities of Guangdong, Lingnan Normal University, Zhanjiang 524048, PR China;

    School of Chemistry and Chemical Engineering, Institute of Physical Chemistry, Development Center for New Materials Engineering & Technology in Universities of Guangdong, Lingnan Normal University, Zhanjiang 524048, PR China;

    School of Chemistry and Chemical Engineering, Institute of Physical Chemistry, Development Center for New Materials Engineering & Technology in Universities of Guangdong, Lingnan Normal University, Zhanjiang 524048, PR China;

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

    Transition metal chalcogenides; Composite; Hydrothermal synthesis; Catalytic properties;

    机译:过渡金属硫属元素化物;综合;水热合成;催化性能;

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