Water electrolysis is a promising and environmentally friendly means for renewable energy storage. Recent progress in the development of anion exchange membranes (AEMs) has provided new perspectives for high-performance anode catalysts based on transition metal oxides (TMOs) for the sluggish anodic oxygen evolution reaction (OER). Here, we report on core–shell nanoparticles (Fe3O4@CoFe2O4) which allow combining an electrocatalytic shell (CoFe2O4) with a conductive core (Fe3O4). Such an original approach significantly minimizes critical Co content in the catalyst and avoids addition of unstable conductive carbon black. The core–shell nanoparticles outperform Co(1−x)Fe(2+x)O4 nanoparticles and show an exceptional OER activity per Co unit mass...
We investigate cobalt ferrite nanoparticles (NPs) supported on large-scale electrodes as oxygen evol...
We investigate cobalt ferrite nanoparticles (NPs) supported on large-scale electrodes as oxygen evol...
The design and engineering of earth-abundant catalysts that are both cost-effective and highly activ...
International audienceTransition metal oxides have attracted much attention as promising anode mater...
International audienceTransition metal oxides have attracted much attention as promising anode mater...
The oxygen evolution reaction (OER) occurs at the anode in numerous electrochemical reactions and pl...
This thesis studies a novel type of catalyst aiming for lowering the overpotential of the oxygen evo...
Cette thèse étudie un nouveau type de catalyseur visant à abaisser le potentiel d’activation de la r...
The design and engineering of earth-abundant catalysts that are both cost-effective and highly activ...
The design and engineering of earth-abundant catalysts that are both cost-effective and highly activ...
We investigate cobalt ferrite nanoparticles (NPs) supported on large-scale electrodes as oxygen evol...
We investigate cobalt ferrite nanoparticles (NPs) supported on large-scale electrodes as oxygen evol...
Transition metal oxides are promising materials for the development of cost-effective catalysts for ...
FeCo-based materials are promising candidates as efficient, affordable, and sustainable electrocatal...
The depletion of fossil fuels and the climate change have spurred tremendous research interest in th...
We investigate cobalt ferrite nanoparticles (NPs) supported on large-scale electrodes as oxygen evol...
We investigate cobalt ferrite nanoparticles (NPs) supported on large-scale electrodes as oxygen evol...
The design and engineering of earth-abundant catalysts that are both cost-effective and highly activ...
International audienceTransition metal oxides have attracted much attention as promising anode mater...
International audienceTransition metal oxides have attracted much attention as promising anode mater...
The oxygen evolution reaction (OER) occurs at the anode in numerous electrochemical reactions and pl...
This thesis studies a novel type of catalyst aiming for lowering the overpotential of the oxygen evo...
Cette thèse étudie un nouveau type de catalyseur visant à abaisser le potentiel d’activation de la r...
The design and engineering of earth-abundant catalysts that are both cost-effective and highly activ...
The design and engineering of earth-abundant catalysts that are both cost-effective and highly activ...
We investigate cobalt ferrite nanoparticles (NPs) supported on large-scale electrodes as oxygen evol...
We investigate cobalt ferrite nanoparticles (NPs) supported on large-scale electrodes as oxygen evol...
Transition metal oxides are promising materials for the development of cost-effective catalysts for ...
FeCo-based materials are promising candidates as efficient, affordable, and sustainable electrocatal...
The depletion of fossil fuels and the climate change have spurred tremendous research interest in th...
We investigate cobalt ferrite nanoparticles (NPs) supported on large-scale electrodes as oxygen evol...
We investigate cobalt ferrite nanoparticles (NPs) supported on large-scale electrodes as oxygen evol...
The design and engineering of earth-abundant catalysts that are both cost-effective and highly activ...