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Fe3O4@NiFexOy Nanoparticles with Enhanced Electrocatalytic Properties for Oxygen Evolution in Carbonate Electrolyte

机译:具有增强的电催化性能的Fe3O4 @ NiFexOy纳米颗粒在碳酸盐电解质中释放氧气

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摘要

The design and engineering of earth-abundant catalysts that are both cost-effective and highly active for water splitting are crucial challenges in a number of energy conversion and storage technologies. In this direction, herein we report the synthesis of Fe3O4@NiFexOy core shell nanoheterostructures and the characterization of their electrocatalytic performance toward the oxygen evolution reaction (OER). Such nanoparticles (NPs) were produced by a two-step synthesis procedure involving the colloidal synthesis of Fe3O4 nanocubes with a defective shell and the posterior diffusion of nickel cations within this defective shell. Fe3O4@NiFexOy NPs were subsequently spin-coated over ITO-covered glass and their electrocatalytic activity toward water oxidation in carbonate electrolyte was characterized. Fe3O4@NiFexOy catalysts reached current densities above 1 mA/cm(2) with a 410 mV overpotential and Tafel slopes of 48 mV/dec, which is among the best electrocatalytic performances reported in carbonate electrolyte.
机译:具有成本效益且对水分解具有高活性的富含地球的催化剂的设计和工程设计是许多能量转换和存储技术中的关键挑战。在这个方向上,我们在此报告了Fe3O4 @ NiFexOy核壳纳米异质结构的合成及其对氧释放反应(OER)的电催化性能的表征。此类纳米颗粒(NPs)是通过两步合成程序生产的,该程序涉及具有缺陷外壳的Fe3O4纳米立方体的胶体合成以及该缺陷外壳内镍阳离子的后扩散。随后将Fe3O4 @ NiFexOy NPs旋涂在ITO覆盖的玻璃上,并表征其对碳酸盐电解质中水氧化的电催化活性。 Fe3O4 @ NiFexOy催化剂的电流密度超过1 mA / cm(2),超电势为410 mV,Tafel斜率为48 mV / dec,这是碳酸盐电解质中报道的最佳电催化性能之一。

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