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首页> 外文期刊>Electrochimica Acta >Novel electrocatalyst of nanoporous FeP cubes prepared by fast electrodeposition coupling with acid-etching for efficient hydrogen evolution
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Novel electrocatalyst of nanoporous FeP cubes prepared by fast electrodeposition coupling with acid-etching for efficient hydrogen evolution

机译:用快速电沉积耦合与酸蚀刻中的快速电沉积耦合制备的纳米多孔FEP立方体的新型电催化剂

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摘要

For the development and utilization of renewable energy, it is impending but still a big challenge to develop cost-effective and stable electrocatalysts with feasible synthetic strategies towards hydrogen evolution reaction (HER). Herein, we have proposed a facile and simple strategy for the preparation of non-precious nanoporous FeP cubes within 35 min by acid etching the electrodeposited Fe/FeOOH/FeP precursors at room temperature. The FeP cubes materials possessed unique nanoporous structures on the surface and inside, which were beneficial to expose more active sites and effectively accelerate the mass transfer. Therefore, the as-synthesized nanoporous FeP cubes exhibited favourable catalytic HER activity with low overpotential to approach 10 mA cm(-2) in both acid and alkaline media, as well as long-term stability in acid solution. We expect that this facile synthetic strategy of nanoporous FeP cubes will provide a promising prospect for boosting the development of non-precious HER electrocatalysts. (C) 2019 Elsevier Ltd. All rights reserved.
机译:为了开发和利用可再生能源,即将发生,但仍然是开发具有可行合成策略的成本效益和稳定的电催化致氢化反应(她)的巨大挑战。在此,我们提出了一种容易和简单的策略,用于在室温下通过酸蚀刻电沉积的Fe / FeOOH / FEP前体在35分钟内制备非珍贵的纳米多孔FEP立方体。 FEP立方体材料在表面和内部具有独特的纳米多孔结构,这有利于曝光更多的活性位点并有效地加速传质。因此,作为合成的纳米孔FEP立方体表现出良好的催化剂,其具有低过电位,以在酸和碱性介质中接近10 mA cm(-2),以及酸溶液中的长期稳定性。我们希望纳米多孔FEP多维数据集的这种容易综合策略将为推动非珍贵的她的电催化剂的发展提供了一个有希望的前景。 (c)2019 Elsevier Ltd.保留所有权利。

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