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Immobilizing Molecular Metal Dithiolene-Diamine Complexes on 2D Metal-Organic Frameworks for Electrocatalytic H2 Production

机译:固定在2D金属 - 有机骨架上固定分子金属二氨基络合物,用于电催化H2生产

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摘要

Carbon electrocatalysts consisting of metal complexes such as MN_x or MS_x are promising alternatives to high-cost Pt catalysts for the hydrogen evolution reaction (HER). However, the exact HER active sites remain elusive. Here, molecular metal dithiolene-diamine (MS_2N_2, M=Co and Ni), metal bis(dithiolene) (MS_4), and metal bis(diamine) (MN_4) complexes were selectively incorporated into carbon-rich 2D metal-organic frameworks (2D MOFs) as model carbon electrocatalysts. The 2D MOF single layers, powders, and composites with graphene were thus prepared and showed definite active sites for H_2 generation. The electrocatalytic HER activity of the 2D MOF-based catalysts with different metal complexes follow the order of MS_2N_2>MN_4>MS_4. Moreover, the protonation preferentially occurred on the metal atoms, and the concomitant heterolytic elimination of H_2 was favored on the M-N units in the MS_2N_2 active centers. The results provide an in-depth understanding of the catalytic active sites, thus making way for the future development of metal complexes in carbon-rich electrode materials for energy generation.
机译:由MN_X或MS_X等金属配合物组成的碳电催化剂是对氢进化反应(她)的高成本PT催化剂的替代方案。但是,她的积极场所确切仍然难以捉摸。这里,选择性地掺入富含碳的2D金属 - 有机框架中(2D MOFS)作为模型碳电催化剂。由此制备2D MOF单层,粉末和具有石墨烯的复合材料,并显示出H_2代的明确活性位点。用不同金属配合物的2D MOF基催化剂的电催化她的活性沿MS_2N_2> MN_4> MS_4的顺序遵循。此外,优先发生在金属原子上的质子化,并且在MS_2N_2活性中心的M-N单元上有利于H_2的伴随的异解除去。结果对催化活性位点提供了深入的了解,从而使碳化碳电极材料中的金属配合物的未来发展成为能源产生的方法。

著录项

  • 来源
    《Chemistry: A European journal》 |2017年第10期|共6页
  • 作者单位

    Department of Chemistry and Food Chemistry &

    Center for Advancing Electronics Dresden Technische Universit?t Dresden 01062 Dresden (Germany);

    Department of Chemistry and Food Chemistry &

    Center for Advancing Electronics Dresden Technische Universit?t Dresden 01062 Dresden (Germany);

    Department of Chemistry and Food Chemistry &

    Center for Advancing Electronics Dresden Technische Universit?t Dresden 01062 Dresden (Germany);

    Department of Chemistry and Food Chemistry &

    Center for Advancing Electronics Dresden Technische Universit?t Dresden 01062 Dresden (Germany);

    Department of Chemistry and Food Chemistry &

    Center for Advancing Electronics Dresden Technische Universit?t Dresden 01062 Dresden (Germany);

    Department of Chemistry and Food Chemistry &

    Center for Advancing Electronics Dresden Technische Universit?t Dresden 01062 Dresden (Germany);

    Department of Chemistry and Food Chemistry &

    Center for Advancing Electronics Dresden Technische Universit?t Dresden 01062 Dresden (Germany);

    Department of Chemistry and Food Chemistry &

    Center for Advancing Electronics Dresden Technische Universit?t Dresden 01062 Dresden (Germany);

    Department of Chemistry and Food Chemistry &

    Center for Advancing Electronics Dresden Technische Universit?t Dresden 01062 Dresden (Germany);

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用化学;
  • 关键词

    2D materials; active sites; hydrogen evolution reaction; metal-organic frameworks; single-layer nanosheet;

    机译:2D材料;活性位点;氢气进化反应;金属 - 有机框架;单层纳米片;

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