We employ normal-incidence x-ray standing wave and temperature programed desorption spectroscopy to derive the adsorption geometry and energetics of the prototypical molecular switch azobenzene at Ag(111). This allows us to assess the accuracy of semiempirical correction schemes as a computationally efficient means to overcome the deficiency of semilocal density-functional theory with respect to long-range van der Waals (vdW) interactions. The obtained agreement underscores the significant improvement provided by the account of vdW interactions, with remaining differences mainly attributed to the neglect of electronic screening at the metallic surface
We investigate the surface-catalyzed dissociation of the archetypal molecular switch azobenzene on t...
peer reviewedInterfaces between organic molecules and inorganic solids adapt a prominent role in fun...
A correct description of electronic exchange and correlation effects for molecules in contact with e...
We employ normal-incidence x-ray standing wave and temperature programed desorption spectroscopy to ...
The adsorption structure of the molecular switch azobenzene on Ag(111) is investigated by a combinat...
We use different semiempirical dispersion correction schemes to assess the role of long-range van de...
The adsorption structure of the molecular switch azobenzene on Ag(111) is investigated by a combinat...
We investigate the thermal and electronic collective fluctuations that contribute to the finitetempe...
We present large-scale density-functional theory (DFT) calculations and temperature programmed desor...
We present large-scale density-functional theory (DFT) calculations and temperature programmed desor...
We examine the influence of the adsorption geometry and electronic coupling between azobenzene-based...
peer reviewedInterfaces between organic molecules and solid surfaces play a prominent role in hetero...
We present a detailed comparison of the S0, S1 (n → π*) and S2 (π → π*) potential energy surfaces (P...
The adsorption of 1,4-benzenediamine (BDA) on Au(111) and azobenzene on Ag(111) is investigated usin...
peer reviewedExploring the role of van der Waals (vdW) forces on the adsorption of molecules on exte...
We investigate the surface-catalyzed dissociation of the archetypal molecular switch azobenzene on t...
peer reviewedInterfaces between organic molecules and inorganic solids adapt a prominent role in fun...
A correct description of electronic exchange and correlation effects for molecules in contact with e...
We employ normal-incidence x-ray standing wave and temperature programed desorption spectroscopy to ...
The adsorption structure of the molecular switch azobenzene on Ag(111) is investigated by a combinat...
We use different semiempirical dispersion correction schemes to assess the role of long-range van de...
The adsorption structure of the molecular switch azobenzene on Ag(111) is investigated by a combinat...
We investigate the thermal and electronic collective fluctuations that contribute to the finitetempe...
We present large-scale density-functional theory (DFT) calculations and temperature programmed desor...
We present large-scale density-functional theory (DFT) calculations and temperature programmed desor...
We examine the influence of the adsorption geometry and electronic coupling between azobenzene-based...
peer reviewedInterfaces between organic molecules and solid surfaces play a prominent role in hetero...
We present a detailed comparison of the S0, S1 (n → π*) and S2 (π → π*) potential energy surfaces (P...
The adsorption of 1,4-benzenediamine (BDA) on Au(111) and azobenzene on Ag(111) is investigated usin...
peer reviewedExploring the role of van der Waals (vdW) forces on the adsorption of molecules on exte...
We investigate the surface-catalyzed dissociation of the archetypal molecular switch azobenzene on t...
peer reviewedInterfaces between organic molecules and inorganic solids adapt a prominent role in fun...
A correct description of electronic exchange and correlation effects for molecules in contact with e...