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Porous beta-MnO2 nanoplates derived from MnCO3 nanoplates as highly efficient electrocatalysts toward oxygen evolution reaction

机译:多孔β-MnO2纳米衍生自MnCo3纳米板作为高效的电催化剂朝向氧气进化反应

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摘要

beta-MnO2 has not been considered as an effective catalyst toward the oxygen evolution reaction due to its lack of active di-mu(2)-oxo bridged Mn centres and inaccessibility to the inner Mn atoms. We have envisioned that beta-MnO2 can be made catalytically active by making the inner Mn atoms accessible. In order to accomplish this, we have synthesized MnCO3 nanoplates via a solution route and converted them into highly porous beta-MnO2 nanoplates with very high surface area. In addition to the reduced overpotential of 450 mV at 10 mA cm(-2), the derived Tafel slope was 78.2 mV dec(-1), showing a superior catalytic activity of the porous nanoplate, which is comparable to the catalytic performance of best performing alpha-MnO2 phase. The importance of surface-bound catalytic Mn sites in highly porous beta-MnO2 nanoplates is also demonstrated by Au loading-induced blockage of them and corresponding catalytic activity deterioration.
机译:由于其缺乏活性Di-Mu(2) - 氧化桥Mn中心和内部Mn原子可接近,β-MnO 2未被认为是氧气进化反应的有效催化剂。 我们已经设想通过使内部Mn原子可接近来催化活性β-MnO 2。 为了实现这一点,我们通过溶液途径合成MNCO3纳米层,并将它们转化为高度多孔的β-MnO 2纳米层,具有非常高的表面积。 除了10 mA cm(-2)下450mV的过电位,衍生的Tafel斜率为78.2mV DEC(-1),显示出多孔纳米板的优异催化活性,这与最佳催化性能相当 执行alpha-mno2阶段。 通过Au负载诱导的封闭性和相应的催化活性劣化,还证明了表面结合的催化Mn位点的重要性。

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  • 来源
    《RSC Advances》 |2016年第32期|共5页
  • 作者单位

    Inst for Basic Sci Korea Ctr Mol Spect &

    Dynam Seoul 02841 South Korea;

    Seoul Natl Univ Res Inst Adv Mat Dept Mat Sci &

    Engn 599 Gwanak Ro Seoul 08826 South Korea;

    Korea Basic Sci Inst Seoul 02841 South Korea;

    Seoul Natl Univ Res Inst Adv Mat Dept Mat Sci &

    Engn 599 Gwanak Ro Seoul 08826 South Korea;

    Inst for Basic Sci Korea Ctr Mol Spect &

    Dynam Seoul 02841 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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