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首页> 外文期刊>Advanced functional materials >Construction of CoNiFe Trimetallic Carbonate Hydroxide Hierarchical Hollow Microflowers with Oxygen Vacancies for Electrocatalytic Water Oxidation
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Construction of CoNiFe Trimetallic Carbonate Hydroxide Hierarchical Hollow Microflowers with Oxygen Vacancies for Electrocatalytic Water Oxidation

机译:Construction of CoNiFe Trimetallic Carbonate Hydroxide Hierarchical Hollow Microflowers with Oxygen Vacancies for Electrocatalytic Water Oxidation

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摘要

It is of great challenge to design transition multimetallic carbonate hydroxides with delicate hollow features and defects for efficient electrolytic oxygen evolution reaction (OER). Here, a sequential self-templating method to synthesize CoNiFe trimetallic carbonate hydroxide hierarchical hollow microflowers (CN-xFe HMs) with oxygen vacancies (V_O) is reported. The synergistic merits of hollow structure, Fe substitution, and V_O endow the CN-xFe HMs with high active-site exposure density and increased electrical conductivity. Specially, the optimized CN-xFe HMs validate the excellent OER performance with an overpotential of 258 mV to drive 10 mA cm~(?2) and a Tafel slope of 48.7 mV dec~(?1). Theoretical calculations reveal that Fe substitution and VO can synergistically regulate the electronic states to achieve near-ideal adsorption/ desorption capacity for oxygenated intermediates. Moreover, the successful synthesis of other six metals substituted CoNiM (M = Cu, Zn, Cr, Mo, Er and La) carbonate hydroxides provides a universal protocol to construct transition multimetallic electrocatalysts with hollow structures for gaining highly efficient energy conversion reactions.

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