首页> 外文期刊>ACS applied materials & interfaces >NiSe@NiOOH Core-Shell Hyacinth-like Nanostructures on Nickel Foam Synthesized by in Situ Electrochemical Oxidation as an Efficient Electrocatalyst for the Oxygen Evolution Reaction
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NiSe@NiOOH Core-Shell Hyacinth-like Nanostructures on Nickel Foam Synthesized by in Situ Electrochemical Oxidation as an Efficient Electrocatalyst for the Oxygen Evolution Reaction

机译:镍泡沫上NiSe @ NiOOH壳-壳风信子状纳米结构的原位电化学氧化法作为氧析出反应的高效电催化剂

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NiSe@NiOOH core shell hyacinth-like nanostructures supported on nickel foam (NF) have been successfully synthesized by a facile solvothermal selenization and subsequent in situ electrochemical oxidation (ISEO). First, the unique NiSe/NF nanopillar arrays were prepared in N,N-dimethylformamide (DMF) as a precursor template that can provide a large surface area, excellent conductivity, and robust support. Next, amorphous NiOOH covering the surface of NiSe nanopillars was fabricated by ISEO, as confirmed by XPS andEDX spectroscopy. SEM images revealed the hyacinth-like morphology of NiSe@NiOOH/NF with NiOOH as the shell and NiSe as the core. The electrochemical performance of NiSe@NiOOH/NF for the oxygen evolution reaction (OER) was investigated. NiSe@NiOOH/NF demonstrates an obviously enhanced OER activity with much lower overpotential of 332 mV at 50 mA cm(-2) compared to other Ni-based electrocatalysts. The low charge-transfer resistance (R-ct), large electrochemical double-layer capacitance (C-dl) of electrochemically active surface areas (ECSAs), and excellent long-term stability of NiSe@NiOOH/NF confirm the enhancement of its electrochemical performance for the OER, which can be ascribed to the large amount of active sites derived from the amorphous NiOOH shell and the good conductivity and stability derived from the NiSe core. In addition, the synergistic effect between the NiSe core and NiOOH shell could serve for a highly efficient OER electrocatalyst.
机译:通过容易的溶剂热硒化和随后的原位电化学氧化(ISEO)成功地合成了镍泡沫(NF)上的NiSe @ NiOOH核壳风信子状纳米结构。首先,以N,N-二甲基甲酰胺(DMF)为前体模板制备了独特的NiSe / NF纳米柱阵列,该阵列可提供较大的表面积,出色的导电性和牢固的支撑。接下来,通过XPS和EDX光谱证实,通过ISEO制备了覆盖NiSe纳米柱表面的无定形NiOOH。 SEM图像显示了以NiOOH为壳,NiSe为核的NiSe @ NiOOH / NF的风信子状形态。研究了NiSe @ NiOOH / NF对氧气析出反应(OER)的电化学性能。与其他基于镍的电催化剂相比,NiSe @ NiOOH / NF表现出明显增强的OER活性,在50 mA cm(-2)时的332 mV低得多的过电势。低的电荷转移电阻(R-ct),电化学活性表面积(ECSAs)的大电化学双层电容(C-dl)以及出色的NiSe @ NiOOH / NF长期稳定性证明了其电化学性能的增强OER的性能高,可以归因于非晶态NiOOH壳的大量活性位点以及NiSe核的良好电导率和稳定性。另外,NiSe核与NiOOH壳之间的协同作用可以用作高效的OER电催化剂。

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