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One-step synthesis of nickel phosphide nanowire array supported on nickel foam with enhanced electrocatalytic water splitting performance

机译:镍泡沫镍镍镍磷化镍纳米线阵列的一步合成,具有增强的电催化水分解性能

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The design and facile synthesis of noble metal-free efficient catalysts to accelerate the sluggish kinetics of the hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) is still a big challenge for electrolytic water splitting. Herein, we present a facile one-step approach for constructing a self-supported nickel phosphide nanowire array/Ni foam electrode (Ni–P NA/NF) by direct phosphorization treatment of commercial Ni foam at low temperature according to a vapor-solid growth mechanism. As a three-dimensional bifunctional water splitting catalyst, the Ni–P NA/NF exhibits outstanding electrocatalytic activity with a low cell voltage of 1.69 V to drive current density of 10 mA cm ~(?2) . In addition, it maintains its high catalytic activity for at least 20 h in alkaline media. The presented synthesis method opens up exciting new avenues to explore the design of self-supported three-dimensional electrodes made of transition metal phosphides, ranging from water splitting to other applications.
机译:无贵金属高效催化剂的设计和容易合成,以加速氢进化反应(她)和氧气进化反应(Oer)的缓慢动力学仍然是电解水分裂的重要挑战。在此,我们通过根据蒸汽固体生长在低温下直接磷化镍泡沫的直接磷化物处理来构建自支持的镍磷化物纳米线阵列/ Ni泡沫电极(Ni-P Na / NF)的容易一步方法机制。作为三维双官能水分裂催化剂,Ni-P Na / NF表现出具有1.69V的低电池电压的未突出的电催化活性,以驱动10 mA cm〜(α2)的电流密度。此外,它在碱性培养基中保持至少20小时的高催化活性。呈现的合成方法开辟了令人兴奋的新途径,以探索由过渡金属磷化物制成的自支撑的三维电极的设计,从水分裂到其他应用。

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