Using density functional theory and periodic slabs, we have studied water formation via HCl oxidation on the Cu(1 0 0) surface. We show that while adsorbed chlorine increases the stability of water on the Cu(1 0 0) surface, water molecules dissociate immediately when located next to an oxygen atom. We also show that these competing interactions, when arising from HCl reacting with oxygen on Cu(1 0 0), lead to water formation according to two different pathways depending on the temperature and oxygen coverage
The adsorption of water monomers, small water clusters, water chains and water thin films on the Cu(...
The formation of hydroxyl chains from water dissociation on the Cu(110) surface has been studied by ...
The formation of water by hydrogenation of atomic oxygen is studied using density functional theory....
Density functional theory calculations have been performed to study the combined interaction of oxyg...
Oxygen is shown to adsorb molecularly on a clean Cu(110) surface at 80 K and dissociate around 150 K...
The dissociative chemisorption of HCl on clean and oxidized Cu(100) surfaces has been investigated u...
AbstractThe dissociative chemisorption of HCl on clean and oxidized Cu(100) surfaces has been invest...
© 2017 The Royal Society of Chemistry. We use first-principles density functional theory calculation...
We have used X-ray photoelectron spectroscopy to study the dehydrogenation of H<sub>2</sub>O molecul...
Research Doctorate - Doctor of Philosophy (PhD)In this Thesis, the role of copper in catalysing the ...
The interaction of atomic chlorine with the Cu(110) surface is studied using density functional theo...
The interaction of atomic chlorine with theCu(110) surface is studiedusing density functional theory...
The low-temperature reactivity of water (D2O) adsorbed on clean and oxygen pre-covered Cu(1 1 0) was...
The reaction of hydrogen chloride gas with partially oxidised Cu(110) surfaces follows a different s...
Abstract We have studied the adsorption of water on a Cl covered Cu(100) surface using both low ener...
The adsorption of water monomers, small water clusters, water chains and water thin films on the Cu(...
The formation of hydroxyl chains from water dissociation on the Cu(110) surface has been studied by ...
The formation of water by hydrogenation of atomic oxygen is studied using density functional theory....
Density functional theory calculations have been performed to study the combined interaction of oxyg...
Oxygen is shown to adsorb molecularly on a clean Cu(110) surface at 80 K and dissociate around 150 K...
The dissociative chemisorption of HCl on clean and oxidized Cu(100) surfaces has been investigated u...
AbstractThe dissociative chemisorption of HCl on clean and oxidized Cu(100) surfaces has been invest...
© 2017 The Royal Society of Chemistry. We use first-principles density functional theory calculation...
We have used X-ray photoelectron spectroscopy to study the dehydrogenation of H<sub>2</sub>O molecul...
Research Doctorate - Doctor of Philosophy (PhD)In this Thesis, the role of copper in catalysing the ...
The interaction of atomic chlorine with the Cu(110) surface is studied using density functional theo...
The interaction of atomic chlorine with theCu(110) surface is studiedusing density functional theory...
The low-temperature reactivity of water (D2O) adsorbed on clean and oxygen pre-covered Cu(1 1 0) was...
The reaction of hydrogen chloride gas with partially oxidised Cu(110) surfaces follows a different s...
Abstract We have studied the adsorption of water on a Cl covered Cu(100) surface using both low ener...
The adsorption of water monomers, small water clusters, water chains and water thin films on the Cu(...
The formation of hydroxyl chains from water dissociation on the Cu(110) surface has been studied by ...
The formation of water by hydrogenation of atomic oxygen is studied using density functional theory....