We have fabricated atom-molecule contacts by attachment of single Cu atoms to terpyridine side groups of bis-terpyridine tetra-phenyl ethylene molecules on a Cu(111) surface. By means of scanning tunneling microscopy, spectroscopy, and density functional calculations, we have found that, due to the localization characteristics of molecular orbitals, the Cu-atom contact modifies the state localized at the terpyridine side group which is in contact with the Cu atom but does not affect the states localized at other parts of the molecule. These results illustrate the contact effects at individual orbitals and offer possibilities to manipulate orbital alignments within molecules
Normally, chemisorpiton will give stronger bonding a surface than physisorption. However, if chemiso...
We report on low-temperature scanning tunneling microscopy and spectroscopy measurements on NC-Ph-3-...
Molecular components with their inherent scalability are expected to be promising supplements for na...
We have fabricated atom-molecule contacts by attachment of single Cu atoms to terpyridine side group...
The molecule-metal interface formed by pyridine-2,5-dicarboxylic acid chemically bonded to the Cu (1...
The progress of modern technology is dominated by shrinking component size (with a goal of reaching ...
A novel approach of identifying metal atoms within a metal-organic surface coordination network usin...
A novel approach of identifying metal atoms within a metal–organic surface coordination network usin...
The bonds in metal organic networks on surfaces govern the resulting geometry as well as the electro...
Molecular states of terpyridine ligands in supramolecular coordination assemblies were investigated ...
Temperature-dependent transformations of the adsorption configuration of a molecule containing 2,2′:...
We study the formation of a coordination network consisting of the organic pyridine-based 2,4,6-tris...
We study the formation of a coordination network consisting of the organic pyridine-based 2,4,6-tris...
The study of molecular physics has become increasingly important from both a scientific and technolo...
Normally, chemisorpiton will give stronger bonding a surface than physisorption. However, if chemiso...
We report on low-temperature scanning tunneling microscopy and spectroscopy measurements on NC-Ph-3-...
Molecular components with their inherent scalability are expected to be promising supplements for na...
We have fabricated atom-molecule contacts by attachment of single Cu atoms to terpyridine side group...
The molecule-metal interface formed by pyridine-2,5-dicarboxylic acid chemically bonded to the Cu (1...
The progress of modern technology is dominated by shrinking component size (with a goal of reaching ...
A novel approach of identifying metal atoms within a metal-organic surface coordination network usin...
A novel approach of identifying metal atoms within a metal–organic surface coordination network usin...
The bonds in metal organic networks on surfaces govern the resulting geometry as well as the electro...
Molecular states of terpyridine ligands in supramolecular coordination assemblies were investigated ...
Temperature-dependent transformations of the adsorption configuration of a molecule containing 2,2′:...
We study the formation of a coordination network consisting of the organic pyridine-based 2,4,6-tris...
We study the formation of a coordination network consisting of the organic pyridine-based 2,4,6-tris...
The study of molecular physics has become increasingly important from both a scientific and technolo...
Normally, chemisorpiton will give stronger bonding a surface than physisorption. However, if chemiso...
We report on low-temperature scanning tunneling microscopy and spectroscopy measurements on NC-Ph-3-...
Molecular components with their inherent scalability are expected to be promising supplements for na...