Cation substitution in transition metal oxides is an important approach to improve electrocatalysts by the optimization of their composition. Herein, we report on phase-pure spinel-type CoV2-xFexO4 nanoparticles with 0 ≤ x ≤ 2 as a new class of bi-functional catalysts for the oxygen evolution (OER) and oxygen reduction reactions (ORR). The mixed-metal oxide catalysts exhibit high catalytic activity for both OER and ORR that strongly depends on the V and Fe content. CoV2O4 is known to exhibit a high conductivity, while in CoFe2O4 the cobalt cation distribution is expected to change due to the inversion of the spinel structure. The optimised catalyst, CoV1.5Fe0.5O4, shows an overpotential for OER of ~300 mV for 10 mA cm-2 with a Tafel slope o...
Cost-efficient and durable oxygen evolution catalysts are in great demand, which are dominated not o...
International audienceTransition metal oxides have attracted much attention as promising anode mater...
Spinel oxides have attracted widespread interest for electrocatalytic applications owing to their un...
Cation substitution in transition-metal oxides is an important approach to improve electrocatalysts ...
Sub-10 nm CoFe<sub>2</sub>O<sub>4</sub> nanoparticles with different sizes and various compositions ...
The development of efficient ORR and OER oxide electrocatalysts has become the major challenge in su...
Cobalt-containing spinel oxides are promising electrocatalysts for the oxygen evolution reaction (OE...
Electrochemical energy devices, such as fuel cells and metal-air batteries, convert chemical energy ...
Spinel-type catalysts are promising anode materials for the alkaline oxygen evolution reaction (OER)...
Multi-metal oxide (MMO) materials have significant potential to facilitate various demanding reactio...
Oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) are important for developing ene...
Transition metal oxides are promising materials for the development of cost-effective catalysts for ...
Alkaline fuel cells have drawn increasing attention as next-generation energy-conversion devices for...
Transition metal oxides are promising materials for the development of cost-effective catalysts for ...
Cation substitution in spinel cobaltites (e.g., ACo2O4, in which A = Mn, Fe, Co, Ni, Cu, or Zn) is a...
Cost-efficient and durable oxygen evolution catalysts are in great demand, which are dominated not o...
International audienceTransition metal oxides have attracted much attention as promising anode mater...
Spinel oxides have attracted widespread interest for electrocatalytic applications owing to their un...
Cation substitution in transition-metal oxides is an important approach to improve electrocatalysts ...
Sub-10 nm CoFe<sub>2</sub>O<sub>4</sub> nanoparticles with different sizes and various compositions ...
The development of efficient ORR and OER oxide electrocatalysts has become the major challenge in su...
Cobalt-containing spinel oxides are promising electrocatalysts for the oxygen evolution reaction (OE...
Electrochemical energy devices, such as fuel cells and metal-air batteries, convert chemical energy ...
Spinel-type catalysts are promising anode materials for the alkaline oxygen evolution reaction (OER)...
Multi-metal oxide (MMO) materials have significant potential to facilitate various demanding reactio...
Oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) are important for developing ene...
Transition metal oxides are promising materials for the development of cost-effective catalysts for ...
Alkaline fuel cells have drawn increasing attention as next-generation energy-conversion devices for...
Transition metal oxides are promising materials for the development of cost-effective catalysts for ...
Cation substitution in spinel cobaltites (e.g., ACo2O4, in which A = Mn, Fe, Co, Ni, Cu, or Zn) is a...
Cost-efficient and durable oxygen evolution catalysts are in great demand, which are dominated not o...
International audienceTransition metal oxides have attracted much attention as promising anode mater...
Spinel oxides have attracted widespread interest for electrocatalytic applications owing to their un...