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首页> 外文期刊>Nanoscale >Hierarchical Fe-doped Ni3Se4 ultrathin nanosheets as an efficient electrocatalyst for oxygen evolution reaction
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Hierarchical Fe-doped Ni3Se4 ultrathin nanosheets as an efficient electrocatalyst for oxygen evolution reaction

机译:分层Fe-doped Ni3Se4超薄nanosheets作为一个高效的electrocatalyst氧气进化的反应

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Developing highly efficient oxygen evolution reaction (OER) electrocatalysts is critical to the cost-effective generation of clean fuels. Transition-metal selenides have been proposed to be OER catalyst alternatives to noble metal based catalysts, but generally exhibit limited electrocatalytic activity. We here report hierarchical Fe-doped Ni3Se4 ((Ni,Fe)(3)Se-4) ultrathin nanosheets as an efficient electrocatalyst for OER in alkaline electrolytes. The preparation involves a solvothermal synthesis and a topotactic conversion process. The prepared hierarchical (Ni,Fe)(3)Se-4 ultrathin nanosheets show abundant and accessible catalytically active sites, facile charge transfer and a high specific surface area. Relative to the Ni3Se4 nanosheets, the as -prepared (Ni,Fe)(3)Se-4 ultrathin nanosheets show a higher current density and a lower Tafel slope towards the OER. Remarkably, hierarchical (Ni,Fe)(3)Se-4 ultrathin nanosheets supported on Ni foam exhibit an electrocatalytic OER with a current density of 10 mA cm at a low overpotential of 225 mV and a small Tafel slope of about 41 mV dec(-1). This study establishes (Ni,Fe)(3)Se-4 ultrathin nanosheets as an efficient electrocatalyst for the OER that can be used in the fields of metal-air batteries and water splitting for hydrogen production.
机译:发展高效氧进化反应(OER) electrocatalysts至关重要划算的一代的清洁燃料。提出了过渡金属硒化物是在基于替代贵金属催化剂催化剂,但一般展览有限electrocatalytic活动。分层Fe-doped Ni3Se4((镍、铁)(3)Se-4)超薄nanosheets作为高效electrocatalyst OER的碱性电解质。制备包括solvothermal合成和一个topotactic转换过程。层次(镍、铁)(3)Se-4超薄nanosheets节目丰富,可以催化地活跃网站,灵巧的电荷转移和高具体表面积。当准备(镍、铁)(3)Se-4超薄nanosheets显示更高的电流密度和低塔费尔对OER斜率。层次(镍、铁)(3)Se-4超薄nanosheets支持镍泡沫electrocatalytic展览OER与马10厘米的电流密度低过电压225 mV和一个小塔费尔斜率约41 mV 12月(1)。(镍、铁)(3)Se-4超薄nanosheets作为OER可以有效electrocatalyst在金属气质电池和使用水分解制氢。

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