Water splitting catalysed by earth-abundant materials is pivotal for global- scale production of non-fossil fuels, yet our understanding of the active catalyst structure and reactivity is still insufficient. Here we report on the structurally reversible evolution of crystalline Co3O4 electrocatalysts during oxygen evolution reaction identified using advanced in situ X-ray techniques. At electrode potentials facilitating oxygen evolution, a sub-nanometre shell of the Co3O4 is transformed into an X-ray amorphous CoOx(OH)y which comprises di-μ-oxo-bridged Co3+/4+ ions. Unlike irreversible amorphizations, here, the formation of the catalytically-active layer is reversed by re-crystallization upon return to non-catalytic electrode conditions. Th...
The design and development of highly efficient and stable oxygen evolution reaction (OER) electrocat...
The sluggish kinetics of the oxygen evolution reaction (OER) is the bottleneck for the practical exp...
Earth-abundant electrocatalysts for the oxygen evolution reaction (OER) able to work in acidic worki...
Water splitting catalysed by earth-abundant materials is pivotal for global-scale production of non-...
Spinel-type catalysts are promising anode materials for the alkaline oxygen evolution reaction (OER)...
Water oxidation by amorphous oxides is of high interest in artificial photosynthesis and other route...
Electrochemically converting water into oxygen/hydrogen gas is ideal for high-density renewable ener...
Most oxygen evolution reaction (OER) electrocatalysts are not stable in corrosive acids. Even the ex...
The industrial application of water splitting for oxygen evolution requires low cost, high performan...
Transition metal oxides and related nitrides/nitride-oxides represent a class of materials that have...
Insights into the relationship between the crystal planes of metal oxides and the catalytic activity...
The oxides of cobalt have recently been shown to be highly effective electrocatalysts for the oxygen...
Cost-efficient and durable oxygen evolution catalysts are in great demand, which are dominated not o...
© 2020 Hydrogen Energy Publications LLC We describe a novel synthesis technique for the production o...
Identifying effective methods to enhance the properties of catalysts is urgent to broaden the scanty...
The design and development of highly efficient and stable oxygen evolution reaction (OER) electrocat...
The sluggish kinetics of the oxygen evolution reaction (OER) is the bottleneck for the practical exp...
Earth-abundant electrocatalysts for the oxygen evolution reaction (OER) able to work in acidic worki...
Water splitting catalysed by earth-abundant materials is pivotal for global-scale production of non-...
Spinel-type catalysts are promising anode materials for the alkaline oxygen evolution reaction (OER)...
Water oxidation by amorphous oxides is of high interest in artificial photosynthesis and other route...
Electrochemically converting water into oxygen/hydrogen gas is ideal for high-density renewable ener...
Most oxygen evolution reaction (OER) electrocatalysts are not stable in corrosive acids. Even the ex...
The industrial application of water splitting for oxygen evolution requires low cost, high performan...
Transition metal oxides and related nitrides/nitride-oxides represent a class of materials that have...
Insights into the relationship between the crystal planes of metal oxides and the catalytic activity...
The oxides of cobalt have recently been shown to be highly effective electrocatalysts for the oxygen...
Cost-efficient and durable oxygen evolution catalysts are in great demand, which are dominated not o...
© 2020 Hydrogen Energy Publications LLC We describe a novel synthesis technique for the production o...
Identifying effective methods to enhance the properties of catalysts is urgent to broaden the scanty...
The design and development of highly efficient and stable oxygen evolution reaction (OER) electrocat...
The sluggish kinetics of the oxygen evolution reaction (OER) is the bottleneck for the practical exp...
Earth-abundant electrocatalysts for the oxygen evolution reaction (OER) able to work in acidic worki...