Elemental reorganisation and oxidation state changes of key active sites in Co\u2013Fe spinels are investigated by in situ X-ray photoemission spectroscopy (XPS) and operando X-ray absorption spectroscopy (XAS) under oxygen evolution operating conditions. The combination of the two techniques allows identifying both the surface and bulk modifications on the oxides and relating them to the activity loss during extended cycling. The results show that Co\u2013Fe spinels experience a surface irreversible phase evolution under oxygen evolution reaction (OER) conditions, resulting in the formation of an amorphous layer composed of new stable Co(III) and Fe(III) species. Accelerated ageing tests show that the durability, intended as the performanc...
Transition metal oxides are promising materials for the development of cost-effective catalysts for ...
Highly oxygen evolution reaction (OER)-active electrocatalysts often exhibit improved OER durability...
Improving the stability of electrocatalysts for the oxygen evolution reaction OER through material...
Elemental reorganisation and oxidation state changes of key active sites in Co-Fe spinels are invest...
none11siElemental reorganisation and oxidation state changes of key active sites in Co-Fe spinels ar...
Elemental reorganisation and oxidation state changes of key active sites in Co-Fe spinels are invest...
Spinel-type catalysts are promising anode materials for the alkaline oxygen evolution reaction (OER)...
Reactive oxygen species (ROS) are considered to be responsible for the high catalytic activity of tr...
To deal with the exhaustion of fossil fuels and the climate changes, extensive study has been carrie...
Highly oxygen evolution reaction (OER)-active electrocatalysts often exhibit improved OER durability...
FeCo2O4and CoFe2O4nanoparticles have been studied as oxygen carriers for the Chemical Loop Reforming...
Among the perovskites used to catalyze the oxygen evolution reaction (OER), Ba0.5Sr0.5Co0.8Fe0.2O3-d...
Transition metal oxides are promising materials for the development of cost-effective catalysts for ...
The emergence of disordered metal oxides as electrocatalysts for the oxygen evolution reaction and r...
Brownmillerite-type Ca2FeCoO5 (CFCO) is a highly active electrocatalyst for the oxygen evolution rea...
Transition metal oxides are promising materials for the development of cost-effective catalysts for ...
Highly oxygen evolution reaction (OER)-active electrocatalysts often exhibit improved OER durability...
Improving the stability of electrocatalysts for the oxygen evolution reaction OER through material...
Elemental reorganisation and oxidation state changes of key active sites in Co-Fe spinels are invest...
none11siElemental reorganisation and oxidation state changes of key active sites in Co-Fe spinels ar...
Elemental reorganisation and oxidation state changes of key active sites in Co-Fe spinels are invest...
Spinel-type catalysts are promising anode materials for the alkaline oxygen evolution reaction (OER)...
Reactive oxygen species (ROS) are considered to be responsible for the high catalytic activity of tr...
To deal with the exhaustion of fossil fuels and the climate changes, extensive study has been carrie...
Highly oxygen evolution reaction (OER)-active electrocatalysts often exhibit improved OER durability...
FeCo2O4and CoFe2O4nanoparticles have been studied as oxygen carriers for the Chemical Loop Reforming...
Among the perovskites used to catalyze the oxygen evolution reaction (OER), Ba0.5Sr0.5Co0.8Fe0.2O3-d...
Transition metal oxides are promising materials for the development of cost-effective catalysts for ...
The emergence of disordered metal oxides as electrocatalysts for the oxygen evolution reaction and r...
Brownmillerite-type Ca2FeCoO5 (CFCO) is a highly active electrocatalyst for the oxygen evolution rea...
Transition metal oxides are promising materials for the development of cost-effective catalysts for ...
Highly oxygen evolution reaction (OER)-active electrocatalysts often exhibit improved OER durability...
Improving the stability of electrocatalysts for the oxygen evolution reaction OER through material...