Interfacial engineering of a tri-phase CoFe/CoFeO/Co-FeO electrocatalyst for promoting the oxygen evolution reaction

Obtaining highly efficient and structurally stable electrocatalysts for electrocatalytic oxygen evolution reactions (OERs) at anodes by a simple and feasible strategy remains challenging for achieving hydrogen production with low-energy consumption. Herein, we successfully constructed a tri-phase in...

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Veröffentlicht in:New journal of chemistry 2022-10, Vol.46 (4), p.19373-1938
Hauptverfasser: Lei, Chao, Chen, Jingjuan, Lv, Lin, Wan, Houzhao, Wang, Wenfeng, Zhang, Jun, Wang, Hanbin, Wang, Chundong, Wang, Hao
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Zusammenfassung:Obtaining highly efficient and structurally stable electrocatalysts for electrocatalytic oxygen evolution reactions (OERs) at anodes by a simple and feasible strategy remains challenging for achieving hydrogen production with low-energy consumption. Herein, we successfully constructed a tri-phase interfacial structure of CoFe alloy/CoFe oxide/cobalt-doped iron oxide (denoted as CoFe/CoFeO x /Co-Fe 3 O 4 ) as a highly efficient and low-cost OER electrocatalyst by a one-step chemical bath deposition approach. The tri-phase interfacial structure was achieved by controlling the dosage of reductants/oxidants and tuning the proportion of Co/Fe salts. The as-prepared CoFe/CoFeO x /Co-Fe 3 O 4 not only delivered a remarkable OER activity, i.e. , a low overpotential of 291 mV at 10 mA cm −2 and a small Tafel slope of 47.8 mV dec −1 , but also exhibited a decent stability for a long-term electrolysis. To unveil the catalytic mechanism, two reasonable aspects of adsorption regulation of oxygenating intermediates and interfacial charge transfer at electrodes/electrolytes were predictively proposed. A tri-phase interfacial structure of CoFe alloy/CoFe oxide/cobalt-doped iron oxide as a highly efficient and cost-effective oxygen evolution reaction electrocatalyst was elaborately constructed by a one-step chemical bath deposition approach.
ISSN:1144-0546
1369-9261
DOI:10.1039/d2nj03739d