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首页> 外文期刊>Angewandte Chemie >A Molecular Approach to Manganese Nitride Acting as a High Performance Electrocatalyst in the Oxygen Evolution Reaction
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A Molecular Approach to Manganese Nitride Acting as a High Performance Electrocatalyst in the Oxygen Evolution Reaction

机译:在氧气进化反应中作用作为高性能电催化剂的锰氮化物的分子方法

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摘要

The scalable synthesis of phase-pure crystalline manganese nitride (Mn3N2) from a molecular precursor is reported. It acts as a superiorly active and durable electrocatalyst in the oxygen evolution reaction (OER) from water under alkaline conditions. While electrophoretically deposited Mn3N2 on fluorine tin oxide (FTO) requires an overpotential of 390 mV, the latter is substantially decreased to merely 270 mV on nickel foam (NF) at a current density of 10 mA cm(-2) with a durability of weeks. The high performance of this material is due to the rapid transformation of manganese sites at the surface of Mn3N2 into an amorphous active MnOx overlayer under operation conditions intimately connected with metallic Mn3N2, which increases the charge transfer from the active catalyst surface to the electrode substrates and thus outperforms the electrocatalytic activity in comparison to solely MnOx-based OER catalysts.
机译:报道了来自分子前体的相纯晶锰氮化物(MN3N2)的可扩展合成。 它作为碱性条件下的水中的氧气进化反应(OER)中的优势和耐用的电催化剂。 在氟锡(FTO)上电泳沉积的MN3N2需要390mV的过电位,后者基本上降低,仅在镍泡沫(NF)上以10mA cm(-2)的电流密度为270mV,耐久性为周 。 这种材料的高性能是由于MN3N2表面在与金属MN32紧密连接的操作条件下的无定形活性MNOX覆盖层的锰位点的快速转化,这增加了从活性催化剂表面到电极基板的电荷转移 因此,与单独的MNOX的oer催化剂相比,电催化活性优于电催化活性。

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  • 来源
    《Angewandte Chemie》 |2018年第3期|共5页
  • 作者单位

    Tech Univ Berlin Dept Chem Metalorgan &

    Inorgan Mat Str 17 Juni 135 Sekr C2 D-10623 Berlin Germany;

    Tech Univ Berlin Dept Chem Metalorgan &

    Inorgan Mat Str 17 Juni 135 Sekr C2 D-10623 Berlin Germany;

    Tech Univ Berlin Solid State Chem Dept Chem Str 17 Juni 135 Sekr C2 D-10623 Berlin Germany;

    Tech Univ Darmstadt Inst Mat Sci Jovanka Bontschits Str 2 D-64287 Darmstadt Germany;

    Tech Univ Darmstadt Inst Mat Sci Jovanka Bontschits Str 2 D-64287 Darmstadt Germany;

    Tech Univ Darmstadt Inst Mat Sci Jovanka Bontschits Str 2 D-64287 Darmstadt Germany;

    Tech Univ Berlin Solid State Chem Dept Chem Str 17 Juni 135 Sekr C2 D-10623 Berlin Germany;

    Tech Univ Berlin Dept Chem Metalorgan &

    Inorgan Mat Str 17 Juni 135 Sekr C2 D-10623 Berlin 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

    conductive materials; corrosion; energy storage; metal nitrides; overpotentials;

    机译:导电材料;腐蚀;储能;金属氮化物;过电位;

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