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Core–Shell Structured NiFeSn@NiFe (Oxy)Hydroxide Nanospheres from an Electrochemical Strategy for Electrocatalytic Oxygen Evolution Reaction

机译:核心壳结构的NiFesn @ NiFe(氧)从电化学催化氧气转化反应的电化学策略中氢氧化物纳米球

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Efficient electrocatalysts for the oxygen evolution reaction (OER) are highly desirable because of the intrinsically sluggish kinetics of OER. Herein, core–shell structured nanospheres of NiFexSn@NiFe (oxy)hydroxide (denoted as NiFexSn‐A) are prepared as active OER catalysts by a facile electrochemical strategy, which includes electrodeposition of NiFexSn alloy nanospheres on carbon cloth (CC) and following anodization. The alloy core of NiFexSn could promote charge transfer, and the amorphous shell of NiFe (oxy)hydroxide is defect‐rich and nanoporous due to the selective electrochemical etching of Sn in alkaline medium. The optimized catalyst of NiFe0.5Sn‐A displays a remarkable OER performance with a low overpotential of 260 mV to reach the current density of 10 mA cm?2, a small Tafel slope of 50 mV dec?1, a high turnover frequency of 0.194 s?1 at an overpotential of 300 mV, and a robust durability. Further characterizations indicate that the superior OER performance of the core–shell structured NiFe0.5Sn‐A nanospheres might originate from abundant active sites and small charge transfer resistance. This work brings a new perspective to the design and synthesis of core–shell structured nanospheres for electrocatalysis through a facile electrochemical strategy.
机译:由于伊尔的本质上缓慢的动力学,高效电催化剂是非常理想的。这里,通过容易的电化学策略制备氢氧化物(氧基)氢氧化物(氧化物)氢氧化物(表示为NiFexN-A)的核 - 壳结构化纳米球,其包括碳布(CC)上的NiFexn合金纳米球的电沉积和阳极氧化。 NiFexsn的合金核心可以促进电荷转移,并且NiFe(氧基)氢氧化物的无定形壳体由于碱性介质中Sn的选择性电化学蚀刻而缺陷且纳米多孔。 NiFe0.5SN-A的优化催化剂显示出具有260mV的低过电位的显着的OER性能,以达到10 mA cm 2的电流密度,小TAFEL斜率为50 mVα1,高档频率为0.194 S?1在300 mV的过电势下,稳定耐久性。进一步表征表明核心壳结构NiFe0.5SN-A纳米球的卓越OER性能可能来自丰富的活性位点和小的电荷转移阻力。该作品采用了通过容易电化学策略进行电常压的核心壳结构纳米球的设计和合成的新视角。

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