We performed a study on the fundamental adsorption characteristics of Er3N@C80 deposited on W(110) and Au(111) via room temperature scanning tunneling microscopy and spectroscopy. Adsorbed on W(110), a comparatively strong bond to the endohedral fullerenes inhibited the formation of ordered monolayer islands. In contrast, the Au(111)-surface provides a sufficiently high mobility for the molecules to arrange in monolayer islands after annealing. Interestingly, the fullerenes modify the herringbone reconstruction indicating that the molecule–substrate interaction is of considerable extent. Investigations concerning the electronic structure of Er3N@C80/Au(111) reveals spatial variations dependent on the termination of the Au(111) at the interf...
The adsorption of organic molecules on metal surfaces can lead to complex nanostructuration of the s...
C58 fullerenes were adsorbed onto room temperature Au(111) surface by low-energy (∼6 eV) cluster ion...
Density functional calculations of the adsorption of ethynylbenzene on the Au(111) surface show that...
We performed a study on the fundamental adsorption characteristics of Er3N@C80 deposited on W(110) a...
We have investigated self-assembled island formation, molecular detail and interesting contrast reve...
We have performed a careful study of the adsorption of C-60 molecules on a Au(111) surface by using ...
Our ability to understand and tailor metal-organic interfaces is mandatory to functionalize organic ...
Disordered and uniform (2√3 × 2√3)R30° superstructures of fullerenes on the Au(111) surface have bee...
Trimetallic nitride template fullerenes have been deposited onto a variety of substrates in order to...
Close-packed monolayers of fullerenes on metallic substrates are very rich systems with respect to t...
We have conducted a study of the growth of C60 and C70 on a variety of reconstructed and unreconstru...
C58 fullerenes were adsorbed onto room temperature Au(111) surface by low-energy (∼6 eV) cluster ion...
The geometric and electronic structure of a C60 molecular layer on the Au(001) surfaces was studied ...
The adsorption of organic molecules on metal surfaces can lead to complex nanostructuration of the s...
The geometric structure of C60 monolayers on Au(110) has been investigated by scanning tunneling mic...
The adsorption of organic molecules on metal surfaces can lead to complex nanostructuration of the s...
C58 fullerenes were adsorbed onto room temperature Au(111) surface by low-energy (∼6 eV) cluster ion...
Density functional calculations of the adsorption of ethynylbenzene on the Au(111) surface show that...
We performed a study on the fundamental adsorption characteristics of Er3N@C80 deposited on W(110) a...
We have investigated self-assembled island formation, molecular detail and interesting contrast reve...
We have performed a careful study of the adsorption of C-60 molecules on a Au(111) surface by using ...
Our ability to understand and tailor metal-organic interfaces is mandatory to functionalize organic ...
Disordered and uniform (2√3 × 2√3)R30° superstructures of fullerenes on the Au(111) surface have bee...
Trimetallic nitride template fullerenes have been deposited onto a variety of substrates in order to...
Close-packed monolayers of fullerenes on metallic substrates are very rich systems with respect to t...
We have conducted a study of the growth of C60 and C70 on a variety of reconstructed and unreconstru...
C58 fullerenes were adsorbed onto room temperature Au(111) surface by low-energy (∼6 eV) cluster ion...
The geometric and electronic structure of a C60 molecular layer on the Au(001) surfaces was studied ...
The adsorption of organic molecules on metal surfaces can lead to complex nanostructuration of the s...
The geometric structure of C60 monolayers on Au(110) has been investigated by scanning tunneling mic...
The adsorption of organic molecules on metal surfaces can lead to complex nanostructuration of the s...
C58 fullerenes were adsorbed onto room temperature Au(111) surface by low-energy (∼6 eV) cluster ion...
Density functional calculations of the adsorption of ethynylbenzene on the Au(111) surface show that...