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High-performance electrolytic oxygen evolution with a seamless armor core-shell FeCoNi oxynitride

机译:高性能电解氧进化无缝的盔甲核壳FeCoNi氮氧化物

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摘要

Highly active, low-cost, and durable electrocatalysts for the water oxidation reaction are pivotal in energy conversion and storage schemes. Here we report a nitride-core, oxide-shell-armor structured FeCoNi oxynitride as an efficient oxygen evolution electrocatalyst with a homogeneous nitride (Fe0.70Co0.56Ni0.92N1.0O0.06) core and an oxide (Fe0.48Co0.1Ni0.21N0.05O1.0) shell. The catalyst demonstrated excellent activity for the oxygen evolution reaction with a current density of 10 mA cm(-2) at a low overpotential of 0.291 V in alkaline media (1 M KOH), which is superior to the activities of commercial IrO2, RuO2, and Pt/C catalysts and comparable to those of state-of-the-art catalysts (e.g., NiFe-LDH, NiCo2O4, O-NiCoFe-LDH). Density functional theory simulations suggested that the incorporation of multiple metal elements can indeed improve the reaction energetics with a synergistic effect from the core-shell structure. This unique structure of a nitride-core with a oxide-shell presents a new form of multimetallic oxynitride with compelling performance in electrolytic oxygen evolution.
机译:高活性、低成本和耐用electrocatalysts水氧化反应关键在能量转换和存储吗计划。oxide-shell-armor结构化FeCoNi氮氧化物一个高效的氧electrocatalyst进化与氮化均匀(Fe0.70Co0.56Ni0.92N1.0O0.06)核心和氧化物(Fe0.48Co0.1Ni0.21N0.05O1.0)外壳。展示优秀的活动为氧气电流密度的进化反应10马厘米(2)低0.291 V的过电压KOH碱性媒体(1米),这是优越的活动的商业IrO2 RuO2和Pt / C催化剂和可比的最先进的催化剂(如NiFe-LDH,NiCo2O4 O-NiCoFe-LDH)。模拟表明的多种金属元素确实可以改善反应热的协同效应的核壳结构。一个oxide-shell nitride-core结构提出了一种新的形式的多金属氮氧化物电解的令人信服的表现氧进化。

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