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Electrocatalytic water oxidation over AlFe2B2

机译:AlFe2B2上的电催化水氧化

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摘要

We report excellent electrocatalytic performance by AlFe2B2 in the oxygen-evolution reaction (OER). The inexpensive catalytic material, prepared simply by arc-melting followed by ball-milling, exhibits high stability and sustained catalytic performance under alkaline conditions. The overpotential value of 0.24 V observed at the current density of 10 mA cm–2 remained constant for at least 10 days. Electron microscopy and electron energy loss spectroscopy performed on the initial ball-milled material and on the material activated under electrocatalytic conditions suggest that the catalytic mechanism involves partial leaching of Al from the layered structure of AlFe2B2 and the formation of Fe3O4 nanoclusters on the exposed [Fe2B2] layers. Thus, the AlFe2B2 structure serves as a robust supporting material and, more importantly, as a pre-catalyst to the in situ formed active electrocatalytic sites. Comparative electrochemical measurements demonstrate that the electrocatalytic performance of the AlFe2B2-supported Fe3O4 nanoclusters substantially exceeds the results obtained with unsupported nanoparticles of Fe3O4, FeB, or such benchmark OER catalysts as IrO2 or RuO2. The excellent catalytic performance and long-term stability of this system suggests that AlFe2B2 can serve as a promising and inexpensive OER electrocatalyst.
机译:我们报道了AlFe2B2在氧气逸出反应(OER)中的出色电催化性能。简单地通过电弧熔融然后进行球磨制备的廉价催化材料在碱性条件下显示出高稳定性和持续的催化性能。在10 mA cm –2 的电流密度下观察到的0.24 V的过电势值至少持续10天保持恒定。在初始球磨材料和在电催化条件下活化的材料上进行的电子显微镜和电子能量损失光谱分析表明,催化机理涉及从AlFe2B2的层状结构中部分浸出Al和在暴露的[Fe2B2]上形成Fe3O4纳米团簇。 ]图层。因此,AlFe 2 B 2结构用作坚固的支撑材料,更重要的是,用作原位形成的活性电催化位的预催化剂。对比电化学测量表明,AlFe2B2负载的Fe3O4纳米簇的电催化性能大大超过了无负载的Fe3O4,FeB纳米颗粒或诸如IrO 2 或RuO 2 < / sub>。该体系优异的催化性能和长期稳定性表明,AlFe 2 B 2 可以作为一种有前景且廉价的OER电催化剂。

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