We present a comparative study, combining density functional theory with scanning tunneling microscopy/spectroscopy, of two aromatic molecules bonded with a variable number of Cu adatom(s) on a Cu(111) surface. The two molecules, 1,3,5-tris(pyridyl)benzene (TPyB) and 1,3,5-tris(4-radical-phenyl)benzene (TPB), possess the same aromatic backbone but bond weakly versus strongly to Cu with different terminal groups, respectively. We find that TPyB and TPB exhibit, respectively, small versus large charge transfers between the surface and the molecule; this contrast results in opposite shifts in the calculated density of states distributions and thus explains the opposite STS peak shifts observed in our experiments. The two molecules exhibit ...
Interfaces between polycyclic π-electron systems and metals play prominent roles in organic or graph...
The bonds in metal organic networks on surfaces govern the resulting geometry as well as the electro...
Understanding the adsorption of monocyclic aromatics on transition metal surfaces is of great intere...
The interaction of carbon-based aromatic molecules and nanostructures with metals can strongly depen...
Interfaces between polycyclic π-electron systems and metals play prominent roles in organic or graph...
The bonds in metal organic networks on surfaces govern the resulting geometry as well as the electro...
Recent efforts to understand the interaction of large aromatic molecules with metal surfaces are dis...
Large pi conjugated molecules, when in contact with a metal surface, usually retain a finite electro...
The electronic structure of metal−organic interfaces is of paramount importance for the properties o...
Normally, chemisorption will give stronger bonding to a surface than physisorption. However, if chem...
We present a density-functional theory trend study addressing the binding of the trans-cis conformat...
We present a density-functional theory trend study addressing the binding of the trans-cis conformat...
Beside the fact that they attract highest interest in the field of organic electronics, heteromolecu...
The geometric and electronic structure of two structurally similar metal–organic networks grown on t...
Although geometric and electronic properties of any physical or chemical system are always mutually ...
Interfaces between polycyclic π-electron systems and metals play prominent roles in organic or graph...
The bonds in metal organic networks on surfaces govern the resulting geometry as well as the electro...
Understanding the adsorption of monocyclic aromatics on transition metal surfaces is of great intere...
The interaction of carbon-based aromatic molecules and nanostructures with metals can strongly depen...
Interfaces between polycyclic π-electron systems and metals play prominent roles in organic or graph...
The bonds in metal organic networks on surfaces govern the resulting geometry as well as the electro...
Recent efforts to understand the interaction of large aromatic molecules with metal surfaces are dis...
Large pi conjugated molecules, when in contact with a metal surface, usually retain a finite electro...
The electronic structure of metal−organic interfaces is of paramount importance for the properties o...
Normally, chemisorption will give stronger bonding to a surface than physisorption. However, if chem...
We present a density-functional theory trend study addressing the binding of the trans-cis conformat...
We present a density-functional theory trend study addressing the binding of the trans-cis conformat...
Beside the fact that they attract highest interest in the field of organic electronics, heteromolecu...
The geometric and electronic structure of two structurally similar metal–organic networks grown on t...
Although geometric and electronic properties of any physical or chemical system are always mutually ...
Interfaces between polycyclic π-electron systems and metals play prominent roles in organic or graph...
The bonds in metal organic networks on surfaces govern the resulting geometry as well as the electro...
Understanding the adsorption of monocyclic aromatics on transition metal surfaces is of great intere...