By first-principle simulations we study the effects of molecular deformation on the electronic and spectroscopic properties as it occurs for pentacene adsorbed on the most stable site of Al(001). The rationale for the particular V-shaped deformed structure is discussed and understood. The molecule\u2013surface bond is made evident by mapping the charge redistribution. Upon X-ray photoelectron spectroscopy (XPS) from the molecule, the bond with the surface is destabilized by the electron density rearrangement to screen the core hole. This destabilization depends on the ionized carbon atom, inducing a narrowing of the XPS spectrum with respect to the molecules adsorbed hypothetically undistorted, in full agreement to experiments. When looking...
The interaction of pentacene molecules in contact with the Cu(119) stepped surface has been directly...
We investigated the adsorption of pentacene on the (111) surface of platinum, which is an archetypal...
The following article appeared in Journal of Chemical Physics 135.8 (2011): 084702 and may be found...
By first-principle simulations we study the effects of molecular deformation on the electronic and s...
We study the structural, electronic, and spectroscopic properties of pentacene adsorbed on Al(001) s...
The adsorption of the first layer of organic molecules at the metal 12organic interface in electroni...
Molecular adsorption on both quasicrystalline and approximant substrates has produced a number of ps...
Pentacene adsorbed on the Cu(119) vicinal surface forms long-range ordered chain structures. Photoem...
Hybrid interfaces between organic molecules and inorganic substrates are key systems in many technol...
Using first-principles calculations based on density-functional theory (DFT), we investigated the ef...
Adsorption energies of chemisorbed molecules on inorganic solids usually scale linearly with molecul...
We investigated the adsorption of pentacene on the (111) surface of platinum, which is an archetypal...
Surface ordering of pentacene molecules adsorbed on an aperiodic Cu surface has been studied with de...
Adsorption energies of chemisorbed molecules on inorganic solids usually scale linearly with molecul...
The bandstructure of pentacene is calculated using first-principles density functional theory. A lar...
The interaction of pentacene molecules in contact with the Cu(119) stepped surface has been directly...
We investigated the adsorption of pentacene on the (111) surface of platinum, which is an archetypal...
The following article appeared in Journal of Chemical Physics 135.8 (2011): 084702 and may be found...
By first-principle simulations we study the effects of molecular deformation on the electronic and s...
We study the structural, electronic, and spectroscopic properties of pentacene adsorbed on Al(001) s...
The adsorption of the first layer of organic molecules at the metal 12organic interface in electroni...
Molecular adsorption on both quasicrystalline and approximant substrates has produced a number of ps...
Pentacene adsorbed on the Cu(119) vicinal surface forms long-range ordered chain structures. Photoem...
Hybrid interfaces between organic molecules and inorganic substrates are key systems in many technol...
Using first-principles calculations based on density-functional theory (DFT), we investigated the ef...
Adsorption energies of chemisorbed molecules on inorganic solids usually scale linearly with molecul...
We investigated the adsorption of pentacene on the (111) surface of platinum, which is an archetypal...
Surface ordering of pentacene molecules adsorbed on an aperiodic Cu surface has been studied with de...
Adsorption energies of chemisorbed molecules on inorganic solids usually scale linearly with molecul...
The bandstructure of pentacene is calculated using first-principles density functional theory. A lar...
The interaction of pentacene molecules in contact with the Cu(119) stepped surface has been directly...
We investigated the adsorption of pentacene on the (111) surface of platinum, which is an archetypal...
The following article appeared in Journal of Chemical Physics 135.8 (2011): 084702 and may be found...