Funding Information: This work was supported by Business Finland through project Molecular Modelling in Industrial Research and Development (MM-IRD). The authors wish to acknowledge CSC – IT Center for Science, Finland, for computational resources. Publisher Copyright: © 2023 The Author(s)Oxygen and water are the most reactive gases of the ambient air. The adsorption of both molecules on transition metal surfaces have been studied extensively, but mostly separately. However, water and oxygen usually co-exist, and therefore realistic systems need to take into consideration both simultaneously. As these adsorption reactions are so common, state-of-the-art results are beneficial as they capture large trends as accurately as possible. A compreh...
The dissociation and formation of water on the Rh(111) and Ni(111) surfaces have been studied using ...
A systematic study of the adsorption and dissociation of water on transition and noble metal dimers ...
A systematic study of the adsorption and dissociation of water on transition and noble metal dimers ...
Water dissociation on clean and oxygen-preadsorbed transition metal surfaces was investigated by the...
Understanding the structure and chemical reactivity of water adsorbed at metallic surfaces is very i...
Understanding the structure and chemical reactivity of water adsorbed at metallic surfaces is very i...
Understanding the structure and chemical reactivity of water adsorbed at metallic surfaces is very i...
Understanding the structure and chemical reactivity of water adsorbed at metallic surfaces is very i...
Using density-functional theory we found that, depending on coverage, coadsorbed oxygen can act both...
We address the nature of the bond between water molecules and metal surfaces through a systematic de...
General trends for the reaction of water dissociation on some selected transition metal (TM) bimetal...
Density functional theory has been used to study the effect of water on the molecular (02, 0, and CO...
We address the nature of the bond between water molecules and metal surfaces through a systematic de...
We address the nature of the bond between water molecules and metal surfaces through a systematic de...
The dissociation and formation of water on the Rh(111) and Ni(111) surfaces have been studied using ...
The dissociation and formation of water on the Rh(111) and Ni(111) surfaces have been studied using ...
A systematic study of the adsorption and dissociation of water on transition and noble metal dimers ...
A systematic study of the adsorption and dissociation of water on transition and noble metal dimers ...
Water dissociation on clean and oxygen-preadsorbed transition metal surfaces was investigated by the...
Understanding the structure and chemical reactivity of water adsorbed at metallic surfaces is very i...
Understanding the structure and chemical reactivity of water adsorbed at metallic surfaces is very i...
Understanding the structure and chemical reactivity of water adsorbed at metallic surfaces is very i...
Understanding the structure and chemical reactivity of water adsorbed at metallic surfaces is very i...
Using density-functional theory we found that, depending on coverage, coadsorbed oxygen can act both...
We address the nature of the bond between water molecules and metal surfaces through a systematic de...
General trends for the reaction of water dissociation on some selected transition metal (TM) bimetal...
Density functional theory has been used to study the effect of water on the molecular (02, 0, and CO...
We address the nature of the bond between water molecules and metal surfaces through a systematic de...
We address the nature of the bond between water molecules and metal surfaces through a systematic de...
The dissociation and formation of water on the Rh(111) and Ni(111) surfaces have been studied using ...
The dissociation and formation of water on the Rh(111) and Ni(111) surfaces have been studied using ...
A systematic study of the adsorption and dissociation of water on transition and noble metal dimers ...
A systematic study of the adsorption and dissociation of water on transition and noble metal dimers ...