Water oxidation in the neutral pH regime catalyzed by amorphous transition-metal oxides is of high interest in energy science. Crucial determinants of electrocatalytic activity were investigated for a cobalt-based oxide film electrodeposited at various thicknesses on inert electrodes. For water oxidation at low current densities, the turnover frequency (TOF) per cobalt ion of the bulk material stayed fully constant for variation of the thickness of the oxide film by a factor of 100 (from about 15 nm to 1.5 μm). Thickness variation changed neither the nanostructure of the outer film surface nor the atomic structure of the oxide catalyst significantly. These findings imply catalytic activity of the bulk hydrated oxide material. Nonclassical d...
Solar-driven electrochemical transformations of small molecules, such as water splitting and CO<sub>...
Water oxidation to dioxygen is an essential energy capture process in biological systems mediated by...
Development of electrocatalysts for the conversion of water to dioxygen is important in a variety of...
Water oxidation in the neutral pH regime catalyzed by amorphous transition-metal oxides is of high i...
Is water oxidation catalyzed at the surface or within the bulk volume of solid oxide materials? This...
Water splitting to produce molecular hydrogen is an essential method to store sustainable energies. ...
Water splitting to produce molecular hydrogen is an essential method to store sustainable energies. ...
Water oxidation is an important half-reaction to achieve overall water splitting. In this present st...
Photochemical metal–organic deposition (PMOD) was used to prepare amorphous metal oxide films contai...
An electrocatalytic cobalt oxide film for water oxidation was prepared on an indium tin oxide (ITO)-...
Amongst the most promising materials designed to catalyse water oxidation from earth-abundant materi...
Direct (photo)electrochemical production of non-fossil fuels from water and CO2 requires water-oxida...
The presence of layered cobalt oxides has been identified experimentally in Co-based anodes under ox...
The presence of layered cobalt oxides has been identified experimentally in Co-based anodes under ox...
The development of efficient and stable earth-abundant water oxidation catalysts is vital for econom...
Solar-driven electrochemical transformations of small molecules, such as water splitting and CO<sub>...
Water oxidation to dioxygen is an essential energy capture process in biological systems mediated by...
Development of electrocatalysts for the conversion of water to dioxygen is important in a variety of...
Water oxidation in the neutral pH regime catalyzed by amorphous transition-metal oxides is of high i...
Is water oxidation catalyzed at the surface or within the bulk volume of solid oxide materials? This...
Water splitting to produce molecular hydrogen is an essential method to store sustainable energies. ...
Water splitting to produce molecular hydrogen is an essential method to store sustainable energies. ...
Water oxidation is an important half-reaction to achieve overall water splitting. In this present st...
Photochemical metal–organic deposition (PMOD) was used to prepare amorphous metal oxide films contai...
An electrocatalytic cobalt oxide film for water oxidation was prepared on an indium tin oxide (ITO)-...
Amongst the most promising materials designed to catalyse water oxidation from earth-abundant materi...
Direct (photo)electrochemical production of non-fossil fuels from water and CO2 requires water-oxida...
The presence of layered cobalt oxides has been identified experimentally in Co-based anodes under ox...
The presence of layered cobalt oxides has been identified experimentally in Co-based anodes under ox...
The development of efficient and stable earth-abundant water oxidation catalysts is vital for econom...
Solar-driven electrochemical transformations of small molecules, such as water splitting and CO<sub>...
Water oxidation to dioxygen is an essential energy capture process in biological systems mediated by...
Development of electrocatalysts for the conversion of water to dioxygen is important in a variety of...