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N-doped graphene layers encapsulated NiFe alloy nanoparticles derived from MOFs with superior electrochemical performance for oxygen evolution reaction

机译:n掺杂的石墨烯层封装从MOFS衍生自MOFS的NiFe合金纳米颗粒,具有卓越的电化学性能,用于氧气进化反应

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Water splitting, an efficient approach for hydrogen production, is often hindered by unfavorable kinetics of oxygen evolution reaction (OER). In order to reduce the overpotential, noble metal oxides-based electrocatalysts like RuO2 and IrO2 are usually utilized. However, due to their scarcity, the development of cost-effective non-precious OER electrocatalysts with high efficiency and good stability is urgently required. Herein, we report a facile one-step annealing of metal-organic frameworks (MOFs) strategy to synthesize N-doped graphene layers encapsulated NiFe alloy nanoparticles (NiFe@C). Through tuning the nanoparticle size and calcination temperature, NiFe@C with an average size of around 16?nm obtained at 700?°C exhibits superior OER performance with an overpotential of only 281?mV at 10?mA cm(-2) and high durability. The facile synthesis method and excellent electrochemical performance show great potential of NiFe@C in replacing the precious metal-based electrocatalysts in the OER.
机译:水分裂,一种有效的氢气生产方法,通常受到氧气进化反应(Oer)的不利动力学的阻碍。为了减少过电位,通常使用罗滤和IRO2等贵金属氧化物的电催化剂。然而,由于它们的稀缺性,迫切需要高效率和良好稳定性的成本效益的非珍贵OER电催化剂的开发。在此,我们报告了金属有机骨架(MOF)策略的容易一步退火,以合成NiFe合金纳米颗粒(NIFE @ C)的N掺杂石墨烯层。通过调节纳米粒子尺寸和煅烧温度,在700℃下获得的平均尺寸为约16Ω·nm的NiFe @ C表现出优越的OER性能,其过电位仅为281Ω·mV,10?ma cm(-2)和高耐久性。面部的合成方法和优异的电化学性能显示NiFe @ C的巨大潜力在代替Oer中的贵金属基电催化剂时。

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