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Facile Synthesis of 3d Transition-Metal-Doped α-Co(OH)2 Nanomaterials in Water–Methanol Mediated with Ammoniafor Oxygen Evolution Reaction

机译:氨介导的水甲醇溶液中3d过渡金属掺杂α-Co(OH)2纳米材料的简便合成用于析氧反应

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摘要

Layered cobalt hydroxides are cost-efficient electrocatalysts for oxygen evolution reaction (OER) in the field of energy conversion. Herein, we developed a facile synthesis method of 3d transition-metal-doped α-Co(OH)2 nanomaterials mediated with ammonia in water–methanol at room temperature. The doping of Cu2+ and Ni2+ leads to flower-like nanostructures similar to pure α-Co(OH)2, whereas the doping of Fe2+ produces nanoparticles with more than 2 times larger surface area in comparison with the Cu2+- and Ni2+-doped nanoflowers. The obtained dispersion with the addition of Nafion can be used directly as an electrocatalyst for OER with excellent catalytic activity, especially that the overpotential of Fe2+ doped is as low as 290 mV at 10 mA cm–2 and the turnover frequency is improved by 3 times as compared with that of α-Co(OH)2. Furthermore, the catalyst can be loaded onto foam nickel, which presents excellent durability with the current density unchanged under continuous chronoamperometry reaction for as long as 12 h and almost quantitative faradaic efficiency. The superior electrocatalytic properties combined with the simple synthesis without the tediouspurification procedure is very promising for OER.
机译:层状氢氧化钴是能量转化领域中用于氧释放反应(OER)的经济高效的电催化剂。在这里,我们开发了一种在室温下在水-甲醇中由氨介导的3d过渡金属掺杂的α-Co(OH)2纳米材料的简便合成方法。 Cu 2 + 和Ni 2 + 的掺杂导致类似于纯α-Co(OH)2的花状纳米结构,而Fe 2的掺杂+ 生成的纳米粒子比掺杂Cu 2 + -和Ni 2 + 的纳米花大2倍以上。添加了Nafion的分散液可直接用作具有优异催化活性的OER的电催化剂,特别是在10 mA cm 2 + 的过电势低至290 mV > –2 ,周转频率比α-Co(OH)2高3倍。此外,该催化剂可以负载在泡沫镍上,泡沫镍具有出色的耐久性,在连续计时电流法反应下,长达12小时的电流密度不变,并且法拉第效率几乎达到定量。优异的电催化性能与简单的合成方法相结合,无繁琐纯化程序对于OER非常有前途。

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