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首页> 外文期刊>Applied Surface Science >Facile synthetic approach to produce optimized molybdenum carbide catalyst for alkaline HER
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Facile synthetic approach to produce optimized molybdenum carbide catalyst for alkaline HER

机译:适用于生产优化的碳化钼碳化物碳化物催化剂

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摘要

Mo-based materials were recognized as cost-effective electrocatalysts for the hydrogen evolution reaction (HER) in acidic media but were hardly investigated in alkaline media due to the limited active sites, lower conductivity and high water dissociation energy barrier. Herein, a facile, low cost, scalable technique is provided for the synthesis of Mo2C microspheres by a solvothermal route. Varying the feed ratio of the precursors enabled us to control the valence states of Mo and achieve optimized Mo2C phase formation for HER catalysis. Electrodes with the microspherical Mo2C catalyst were stable and exhibited reduced overpotentials of 138 mV at 10 mA cm-2 in 0.5 M KOH with a Tafel slope of 85 mV dec- 1. The formation of an active Mo2C phase with abundance of Mo3+/ Mo2+ active sites in the suitable ratio, as well as fast charge-transfer kinetics, are proposed as the origin for the efficient HER activity. Notably, we used cyclooctatetraene, an industrial byproduct that can be recycled into functional materials for green energy. Our work provides facile and novel way to design and fabricate Mo2Cbased electrocatalyst for HER and probably other green energy applications.
机译:由于有限的活性位点,较低的导电性和高水解离子能量屏障,Mo基材料被认为是酸性培养基中的氢进化反应(她)的经济高效电催化剂。这里,提供了一种容易,低成本,可伸缩的技术,用于通过溶剂热途径合成Mo2C微球。改变前体的进料比使我们能够控制MO的价态,并为她的催化而达到优化的MO2C相形成。具有微球体MO2C催化剂的电极稳定,并在0.5M KOH中表现出10mA CM-2的10mA mV的过电位,TAFEL斜率为85mV DEC-1.形成具有丰度MO3 + / MO2 +活性的活性MO2C相建议以合适的比例以及快速电荷转移动力学作为高效她的活动的起源。值得注意的是,我们使用CycloCtateTraene,该工业副产品可以再循环到绿色能量的功能材料中。我们的作品为设计和制造MO2CACASED电催化剂以及其他绿色能源应用提供了易于设计和制造MO2CACALED电催化的方式。

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