International audienceWe report a first principles study on the structure and energetics of thin films of molybdenum on a (1 1 0) surface of rutile TiO2. Mo films with 1 × 1 epitaxy in the coverage range between 0.5 and 2 monolayer are investigated. The most stable structures are those which maximize the number of Mo–Mo bonds. This leads to two-dimensional structures with zigzag Mo–Mo coordination for 1 monolayer coverage and three-dimensional structures with approximately body-centered cubic coordination for higher coverage. For a coverage up to 1.5 monolayers, the interface Mo atoms preferentially occupy the so-called upper hollow adsorption site with three Mo–O bond
TiO2 thin films doped with 0.2 to 2.0 mol% Mo were spin coated on glass substrates and annealed in a...
Thin-film deposition of metal-organic frameworks (MOFs) is now possible, but little is known regardi...
Stoichiometric and highly-defective TiO2(1 1 0) surfaces (called as yellow and blue, respectively) w...
International audienceWe report a first principles study on the structure and energetics of thin fil...
International audienceA theoretical study on molybdenum clusters adsorbed on a rutile TiO2(110) subs...
International audienceA study on the structure and energetics of a single molybdenum atom adsorbed o...
The rutile TiO2(1 1 0) surface is a highly anisotropic surface exhibiting ‘‘channels'' delimited by ...
Molybdenum was deposited at room temperature on the TiO2110 surface in the 0–1.3 equivalent monolaye...
Molybdenum was deposited at room temperature on the TiO2(110) surface in the 0\u20131.3 equivalent m...
Molybdenum was deposited on blue (i.e. non-stoichiometric) TiO2(1 1 0) surface using a very low depo...
Thin-film deposition of metal–organic frameworks (MOFs) is now possible, but little is known regardi...
X-ray photoelectron spectroscopy (XPS) and extended X-ray absorption fine structure (EXAFS) were use...
THESIS 8514In this dissertation the oxidation of the molybdenum (110) surface was studied at 900 and...
The behavior of rhodium layers deposited on oxidized, 0.15-20.0 ML thick Mo films formed on a nearly...
Surface restructuring is a useful approach to modulating the properties of nanoparticles. A low-dime...
TiO2 thin films doped with 0.2 to 2.0 mol% Mo were spin coated on glass substrates and annealed in a...
Thin-film deposition of metal-organic frameworks (MOFs) is now possible, but little is known regardi...
Stoichiometric and highly-defective TiO2(1 1 0) surfaces (called as yellow and blue, respectively) w...
International audienceWe report a first principles study on the structure and energetics of thin fil...
International audienceA theoretical study on molybdenum clusters adsorbed on a rutile TiO2(110) subs...
International audienceA study on the structure and energetics of a single molybdenum atom adsorbed o...
The rutile TiO2(1 1 0) surface is a highly anisotropic surface exhibiting ‘‘channels'' delimited by ...
Molybdenum was deposited at room temperature on the TiO2110 surface in the 0–1.3 equivalent monolaye...
Molybdenum was deposited at room temperature on the TiO2(110) surface in the 0\u20131.3 equivalent m...
Molybdenum was deposited on blue (i.e. non-stoichiometric) TiO2(1 1 0) surface using a very low depo...
Thin-film deposition of metal–organic frameworks (MOFs) is now possible, but little is known regardi...
X-ray photoelectron spectroscopy (XPS) and extended X-ray absorption fine structure (EXAFS) were use...
THESIS 8514In this dissertation the oxidation of the molybdenum (110) surface was studied at 900 and...
The behavior of rhodium layers deposited on oxidized, 0.15-20.0 ML thick Mo films formed on a nearly...
Surface restructuring is a useful approach to modulating the properties of nanoparticles. A low-dime...
TiO2 thin films doped with 0.2 to 2.0 mol% Mo were spin coated on glass substrates and annealed in a...
Thin-film deposition of metal-organic frameworks (MOFs) is now possible, but little is known regardi...
Stoichiometric and highly-defective TiO2(1 1 0) surfaces (called as yellow and blue, respectively) w...