Brownmillerite-type Ca2FeCoO5 (CFCO) is a highly active electrocatalyst for the oxygen evolution reaction (OER). In this study, we identified the actual catalytically active phase of this oxide formed via the long-term OER and, moreover, demonstrated that the active phase can persist during the OER for 4 weeks without significant loss of electrocatalytic activity. The long-term durability tests were carried out on CFCO via continuous galvanostatic OER in 4 mol dm(-3) KOH aqueous solution for periods ranging from a few hours to 1 month, and the specimens submitted to the tests were characterized by means of electrochemical measurements and structural analysis using scanning electron microscopy, X-ray diffraction, transmission electron micros...
[[abstract]]Electrocatalytic water splitting is a key technique to produce hydrogen fuels, which can...
Funder: National Research Foundation SingaporePerovskite oxides based on earth-abundant transition m...
We report excellent electrocatalytic performance by AlFe 2 B 2 in the oxygen-evolution reaction (OER...
Developing highly active and durable electro-catalysts, consisting of earth-abundant elements, for o...
Highly oxygen evolution reaction (OER)-active electrocatalysts often exhibit improved OER durability...
Water splitting offers the opportunity for storing solar energy and, thus, producing carbon-neutral ...
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...
It is an urgent challenge to develop low-cost and high-performance catalysts for the oxygen evolutio...
While self-healing is considered a promising strategy to achieve long-term stability for oxygen evol...
Elemental reorganisation and oxidation state changes of key active sites in Co-Fe spinels are invest...
The amorphous Co-Ce binary metal oxides Co1-yCeyOx prepared by the photochemical metal–organic depos...
Water splitting is one of the cleanest ways to store energy. The production of hydrogen and oxygen g...
Highly oxygen evolution reaction (OER)-active electrocatalysts often exhibit improved OER durability...
Catalyst durability in renewable energy systems (including CO₂ electroreduction and Hydrogen fuel ce...
[[abstract]]Electrocatalytic water splitting is a key technique to produce hydrogen fuels, which can...
Funder: National Research Foundation SingaporePerovskite oxides based on earth-abundant transition m...
We report excellent electrocatalytic performance by AlFe 2 B 2 in the oxygen-evolution reaction (OER...
Developing highly active and durable electro-catalysts, consisting of earth-abundant elements, for o...
Highly oxygen evolution reaction (OER)-active electrocatalysts often exhibit improved OER durability...
Water splitting offers the opportunity for storing solar energy and, thus, producing carbon-neutral ...
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...
It is an urgent challenge to develop low-cost and high-performance catalysts for the oxygen evolutio...
While self-healing is considered a promising strategy to achieve long-term stability for oxygen evol...
Elemental reorganisation and oxidation state changes of key active sites in Co-Fe spinels are invest...
The amorphous Co-Ce binary metal oxides Co1-yCeyOx prepared by the photochemical metal–organic depos...
Water splitting is one of the cleanest ways to store energy. The production of hydrogen and oxygen g...
Highly oxygen evolution reaction (OER)-active electrocatalysts often exhibit improved OER durability...
Catalyst durability in renewable energy systems (including CO₂ electroreduction and Hydrogen fuel ce...
[[abstract]]Electrocatalytic water splitting is a key technique to produce hydrogen fuels, which can...
Funder: National Research Foundation SingaporePerovskite oxides based on earth-abundant transition m...
We report excellent electrocatalytic performance by AlFe 2 B 2 in the oxygen-evolution reaction (OER...