Understanding the correlation between structure and reactivity of oxide surfaces is vital for the rational design of catalytic materials. In this work, we demonstrate the exceptional degree of structure sensitivity of the water dissociation reaction for one of the most important materials in catalysis and electrocatalysis. We studied H<sub>2</sub>O on two atomically defined cobalt oxide surfaces, CoO(100) and Co<sub>3</sub>O<sub>4</sub>(111). Both surfaces are terminated by O<sup>2–</sup> and Co<sup>2+</sup> in different coordination. By infrared reflection absorption spectroscopy and synchrotron radiation photoelectron spectroscopy we show that H<sub>2</sub>O adsorbs molecularly on CoO(100), while it dissociates and forms very strongly bou...
Water splitting to produce molecular hydrogen is an essential method to store sustainable energies. ...
Quantum chemical calculations and simulated kinetics were used to examine the structure sensitivity ...
Quantum chemical calculations and simulated kinetics were used to examine the structure sensitivity ...
We carried out density functional theory calculations with on-site Coulomb repulsion U terms to stud...
The interaction of water with metal oxides controls their activity and stability in heterogeneous ca...
The interaction of water with metal oxides controls their activity and stability in heterogeneous ca...
The interaction of water with metal oxides controls their activity and stability in heterogeneous ca...
Cobalt oxides comprise two readily accessible cation oxidation states: Co2+ and Co3+, which are ther...
Cobalt oxides comprise two readily accessible cation oxidation states: Co2+ and Co3+, which are ther...
Cobalt oxides comprise two readily accessible cation oxidation states: Co2+ and Co3+, which are ther...
Cobalt oxides comprise two readily accessible cation oxidation states: Co2+ and Co3+, which are ther...
Transition metal oxides show great promise as Earth-abundant catalysts for the oxygen evolution reac...
Cobalt oxides comprise two readily accessible cation oxidation states: Co2+ and Co3+, which are ther...
Water splitting to produce molecular hydrogen is an essential method to store sustainable energies. ...
Cobalt oxides are known to be active catalysts for a number of chemical reactions, but very little i...
Water splitting to produce molecular hydrogen is an essential method to store sustainable energies. ...
Quantum chemical calculations and simulated kinetics were used to examine the structure sensitivity ...
Quantum chemical calculations and simulated kinetics were used to examine the structure sensitivity ...
We carried out density functional theory calculations with on-site Coulomb repulsion U terms to stud...
The interaction of water with metal oxides controls their activity and stability in heterogeneous ca...
The interaction of water with metal oxides controls their activity and stability in heterogeneous ca...
The interaction of water with metal oxides controls their activity and stability in heterogeneous ca...
Cobalt oxides comprise two readily accessible cation oxidation states: Co2+ and Co3+, which are ther...
Cobalt oxides comprise two readily accessible cation oxidation states: Co2+ and Co3+, which are ther...
Cobalt oxides comprise two readily accessible cation oxidation states: Co2+ and Co3+, which are ther...
Cobalt oxides comprise two readily accessible cation oxidation states: Co2+ and Co3+, which are ther...
Transition metal oxides show great promise as Earth-abundant catalysts for the oxygen evolution reac...
Cobalt oxides comprise two readily accessible cation oxidation states: Co2+ and Co3+, which are ther...
Water splitting to produce molecular hydrogen is an essential method to store sustainable energies. ...
Cobalt oxides are known to be active catalysts for a number of chemical reactions, but very little i...
Water splitting to produce molecular hydrogen is an essential method to store sustainable energies. ...
Quantum chemical calculations and simulated kinetics were used to examine the structure sensitivity ...
Quantum chemical calculations and simulated kinetics were used to examine the structure sensitivity ...