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Facile Preparation Process of NiCoP-NiCoSe2 Nano-Bilayer Films for Oxygen Evolution Reaction with High Efficiency and Long Duration

机译:Nicop-Nicose2纳米双层膜的含氧氧化反应的嗜型 - 尼科糖2纳米双层膜的舒适制备方法,效率高,持续时间长

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摘要

In order to explore a new electrocatalyst (or its precursor) for oxygen evolution reaction (OER), much attention has recently been given to the alternative engineering strategy for fabricating a novel nanofilm electrode with high efficiency and long duration. We herein use a two-step electrodeposition method to prepare a series of nanofilm electrodes containing Ni, Co, P, and Se on carbon cloth. After a suitable electrochemical activation process through cyclic voltammetry, the resultant binder-free NiCoP-NiCoSe2 nano-bilayer films are transformed from compact layer(s) to porous nanoparticle ones composed by NiCo hydroxides and a small amount of NiCo oxyhydroxides and thus exhibit a striking electrocatalytic activity (lower to 243 mV overpotential for 10 mA cm(-2)) and excellent stability (80 h) for OER. The rougher surface, well-suited electronic structure originated from the Ni/Co codoping and the rational integration of NiCoP and NiCoSe2 are important factors for the excellent OER performance of the NiCoP-NiCoSe2 film after the electrochemical activation process. In addition, the results on overall water splitting reveal that the NiCoP-NiCoSe2 film is also promising in the practical application of energy conversion and storage.
机译:为了探索用于氧气进化反应(OER)的新电催化剂(或其前体),最近迫切地注意到替代工程策略,用于制造具有高效率和长时间的新型纳米丝电极。我们在使用两步电沉积方法中,制备含有Ni,Co,P和Se的一系列纳米丝电极。在通过循环伏安法通过循环伏安法进行合适的电化学活化过程之后,将所得粘合剂的Nicop-NiCose2纳米双层膜从紧凑的层转化到由氢氧化物和少量Nico羟基氧化物组成的多孔纳米颗粒,因此表现出醒目电催化活性(降低到243 mV过电位10 mA cm(-2))和伊尔的优异稳定性(80小时)。源自Ni / Co Copoping的粗糙表面,良好的电子结构以及Nicop和Nicose2的合理整合是在电化学激活过程之后尼克尼古罗斯2膜优异的oer性能的重要因素。此外,整体水分分裂的结果表明,Nicop-Nicose2薄膜在能量转换和储存的实际应用中也具有很有希望。

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