The imaging of the detailed atomic structure of single organic molecules adsorbed on a Surface is still a challenge for noncontact atomic force microscopy (NC-AFM). To investigate such a NC-AFM imaging process, we performed ab initio calculations to simulate the interaction of clean silicon tips with a benzene molecule adsorbed on a Cu(110) surface. The apex structure of the AFM tip was modeled by Si4H3 and Si4H9 Clusters. These two nanotips were approached on top of three different molecular sites. The forces acting on the Si4H3 nanotip are always repulsive and lead to a displacement of the benzene molecule on the Cu(110) Surface. On the contrary, the forces acting on the Si4H9 nanotip can be attractive or repulsive depending oil the appro...
AbstractIn this work we provide a density functional theory (DFT) study of high coverage metastable ...
We have modelled NC-AFM imaging of organic molecules adsorbed on the MgO(100) and TiO2(110) surfaces...
Adsorption of benzene on the Si(100) surface is studied from first principles. We find that the most...
The adsorption of benzene molecules onto the Cu(1 1 0) surface has been studied using a crystalline ...
We model the adsorption and STM imaging of benzene on Si(100) by using first principles density func...
Noncontact atomic force microscopy (NC-AFM) is now routinely capable of obtaining submolecular resol...
We measured the adsorption geometry of single molecules with intramolecular resolution using noncont...
In the present work we report on our ab initio pseudopotential calculations based on density functio...
We measured the adsorption geometry of single molecules with intramolecular resolution using noncont...
We measured the adsorption geometry of single molecules with intramolecular resolution using noncont...
A crystalline linear combination of atomic orbitals approximation (LCAO) has been used at the densit...
We present a theoretical model of manipulation of the C-60 molecule on the Si(001) surface with a no...
The adsorption of benzene on the Cu(111), Ag(111), Au(111), and Cu(110) surfaces at low coverage is ...
We compare scanning tunneling microscope (STM) measurements on the adsorption of benzene on Si(1 0 0...
Defence is held on 12.1.2022 15:00 – 19:00 (Zoom), https://aalto.zoom.us/j/61312770423Atomic forc...
AbstractIn this work we provide a density functional theory (DFT) study of high coverage metastable ...
We have modelled NC-AFM imaging of organic molecules adsorbed on the MgO(100) and TiO2(110) surfaces...
Adsorption of benzene on the Si(100) surface is studied from first principles. We find that the most...
The adsorption of benzene molecules onto the Cu(1 1 0) surface has been studied using a crystalline ...
We model the adsorption and STM imaging of benzene on Si(100) by using first principles density func...
Noncontact atomic force microscopy (NC-AFM) is now routinely capable of obtaining submolecular resol...
We measured the adsorption geometry of single molecules with intramolecular resolution using noncont...
In the present work we report on our ab initio pseudopotential calculations based on density functio...
We measured the adsorption geometry of single molecules with intramolecular resolution using noncont...
We measured the adsorption geometry of single molecules with intramolecular resolution using noncont...
A crystalline linear combination of atomic orbitals approximation (LCAO) has been used at the densit...
We present a theoretical model of manipulation of the C-60 molecule on the Si(001) surface with a no...
The adsorption of benzene on the Cu(111), Ag(111), Au(111), and Cu(110) surfaces at low coverage is ...
We compare scanning tunneling microscope (STM) measurements on the adsorption of benzene on Si(1 0 0...
Defence is held on 12.1.2022 15:00 – 19:00 (Zoom), https://aalto.zoom.us/j/61312770423Atomic forc...
AbstractIn this work we provide a density functional theory (DFT) study of high coverage metastable ...
We have modelled NC-AFM imaging of organic molecules adsorbed on the MgO(100) and TiO2(110) surfaces...
Adsorption of benzene on the Si(100) surface is studied from first principles. We find that the most...