Organic/inorganic hybrid interfaces play a prominent role in organic (opto)electronics, heterogeneous catalysis, sensors, and other current fields of technology. The performance of the related devices and processes depends critically on the nature and strength of interfacial interaction. Here, we use the molecular isomers naphthalene (Nt) and azulene (Az) on the Ag(111) and Cu(111) surfaces as model systems that cover different bonding regimes from physisorption to chemisorption. Az also serves as a model for nonalternant molecular electronic materials and for topological 5–7 defects in graphene. The interaction energies are determined from the quantitative analysis of temperature-programmed desorption data. On both surfaces, Az binds more ...
CONSPECTUS: The understanding of adsorption and reactions of (large) organic molecules at metal surf...
We investigate the molecular acceptors 3,4,9,10-perylene-tetracarboxylic acid dianhydride (PTCDA), 2...
textElectron transfer at organic/metal interfaces is fundamental to a large number of problems in s...
Interfaces between polycyclic π-electron systems and metals play prominent roles in organic or graph...
Interfaces between polycyclic π-electron systems and metals play prominent roles in organic or graph...
Interfaces between polycyclic π-electron systems and metals play prominent roles in organic or graph...
The interaction of carbon-based aromatic molecules and nanostructures with metals can strongly depen...
The interaction of carbon-based aromatic molecules and nanostructures with metals can strongly depen...
The interaction of carbon-based aromatic molecules and nanostructures with metals can strongly depen...
The interaction of carbon-based aromatic molecules and nanostructures with metals can strongly depen...
The interaction of carbon-based aromatic molecules and nanostructures with metals can strongly depen...
X-ray photoemission and X-ray absorption spectroscopy are important techniques to characterize chemi...
In this work a surface science study on metal-organic interfaces is presented to resolve their geome...
Interfaces between organic molecules and inorganic solids adapt a prominent role in fundamental scie...
In this work a surface science study on metal-organic interfaces is presented toresolve their geomet...
CONSPECTUS: The understanding of adsorption and reactions of (large) organic molecules at metal surf...
We investigate the molecular acceptors 3,4,9,10-perylene-tetracarboxylic acid dianhydride (PTCDA), 2...
textElectron transfer at organic/metal interfaces is fundamental to a large number of problems in s...
Interfaces between polycyclic π-electron systems and metals play prominent roles in organic or graph...
Interfaces between polycyclic π-electron systems and metals play prominent roles in organic or graph...
Interfaces between polycyclic π-electron systems and metals play prominent roles in organic or graph...
The interaction of carbon-based aromatic molecules and nanostructures with metals can strongly depen...
The interaction of carbon-based aromatic molecules and nanostructures with metals can strongly depen...
The interaction of carbon-based aromatic molecules and nanostructures with metals can strongly depen...
The interaction of carbon-based aromatic molecules and nanostructures with metals can strongly depen...
The interaction of carbon-based aromatic molecules and nanostructures with metals can strongly depen...
X-ray photoemission and X-ray absorption spectroscopy are important techniques to characterize chemi...
In this work a surface science study on metal-organic interfaces is presented to resolve their geome...
Interfaces between organic molecules and inorganic solids adapt a prominent role in fundamental scie...
In this work a surface science study on metal-organic interfaces is presented toresolve their geomet...
CONSPECTUS: The understanding of adsorption and reactions of (large) organic molecules at metal surf...
We investigate the molecular acceptors 3,4,9,10-perylene-tetracarboxylic acid dianhydride (PTCDA), 2...
textElectron transfer at organic/metal interfaces is fundamental to a large number of problems in s...