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首页> 外文期刊>Nature Communications >Electrodeposition of hierarchically structured three-dimensional nickel–iron electrodes for efficient oxygen evolution at high current densities
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Electrodeposition of hierarchically structured three-dimensional nickel–iron electrodes for efficient oxygen evolution at high current densities

机译:电沉积分层结构的三维镍铁电极,可在高电流密度下有效释放氧气

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Large-scale industrial application of electrolytic splitting of water has called for the development of oxygen evolution electrodes that are inexpensive, robust and can deliver large current density (>500?mA?cm?2) at low applied potentials. Here we show that an efficient oxygen electrode can be developed by electrodepositing amorphous mesoporous nickel–iron composite nanosheets directly onto macroporous nickel foam substrates. The as-prepared oxygen electrode exhibits high catalytic activity towards water oxidation in alkaline solutions, which only requires an overpotential of 200?mV to initiate the reaction, and is capable of delivering current densities of 500 and 1,000?mA?cm?2 at overpotentials of 240 and 270?mV, respectively. The electrode also shows prolonged stability against bulk water electrolysis at large current. Collectively, the as-prepared three-dimensional structured electrode is the most efficient oxygen evolution electrode in alkaline electrolytes reported to the best of our knowledge, and can potentially be applied for industrial scale water electrolysis.
机译:电解水分解的大规模工业应用要求开发出氧气析出电极,该电极价格便宜,坚固耐用,并且在低施加量下可以提供大电流密度(> 500?mA?cm ?2 )潜力。在这里,我们表明,可以通过将无定形介孔镍铁复合纳米片直接电沉积到大孔镍泡沫基材上来开发有效的氧电极。所制备的氧电极对碱性溶液中的水氧化具有很高的催化活性,仅需200µmV的超电势即可引发反应,并能够提供500和1,000?mA?cm 2的电流密度。 2 分别在240和270?mV的过电势下。该电极还显示出在大电流下抵抗大量水电解的长期稳定性。总体而言,据我们所知,所制备的三维结构化电极是碱性电解质中最高效的析氧电极,可潜在地用于工业规模的水电解。

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