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◆ Fuel2026-02-17· Overpotential

Hydrogen and oxygen evolution reactions for high-performance electrocatalytic water splitting by tuning cobalt content in cobalt ferrite

Yassine Elaadssi, Mohamed El Ouardi, V. Madigou, Amane Jada, M. Ezz El Arab

原始摘要(英文原文)· Original abstract
This study investigates the use of Co x Fe 3-x O 4 with different cobalt ratios (x = 1, 1.2, and 1.5) for the electrocatalytic water splitting process. Experimental measurements showed that the electrocatalytic performance of cobalt ferrite toward both the oxygen evolution reaction (OER) and hydrogen evolution reaction (HER) was systematically enhanced by cobalt enrichment. In particular, the Co 1.5 Fe 1.5 O 4 catalyst showed a lower OER overpotential compared to the CoFe 2 O 4 composition (341 mV vs. RHE at 10 mA/cm 2 compared to 467 mV), while the HER overpotential decreased from 370 to 331 mV at −10 mA/cm 2 . These enhancements are attributed to an increase in the electrochemically active surface area (ECSA) from 11.72 to 20.03 cm 2 and an improvement in the OER turnover frequency (TOF) from 1.9 to 2.8 s −1 . Additionally, Co 1.5 Fe 1.5 O 4 showed excellent stability, maintaining over 96% of its activity during 48 h of continuous operation. The HER and OER processes appear to be favored by the presence of cationic metal sites and oxygen vacancies, which are particularly promoted by the oxidation of Co 2+ to Co 3+ . This study reports a strong correlation between the Co/Fe ratio and electrocatalytic efficiency of water splitting, thus providing valuable insights for the design of robust and cost-effective catalysts for sustainable hydrogen and oxygen production.
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Hydrogen and oxygen evolution reactions for high-performance electrocatalytic water splitting by tuning cobalt content in cobalt ferrite — 科研速览 Science Skim