The self-organisation of silver-containing hydrogen-bonded rosette assemblies on highly oriented pyrolytic graphite (HOPG) surfaces is described. The introduction of silver atoms into the double rosette architecture was achieved using the affinity of silver cations for cooperative -donors or cyano functionalities on the double rosettes. Highly ordered 2-D nanorod domains with an inter-row spacing of 4-5 nm oriented in different directions were revealed by tapping-mode atomic force microscopy (AFM). This new and simple strategy for the creation of metal-containing supramolecular nanorod arrays that can act as well-defined surface-immobilised self-assembled scaffolds, will contribute to the development of functionalised nanoarchitectures via ...
The first example of a simultaneous threecomponent assembly on surfaces mediated by triple H-bonding...
A convenient covalent functionalization approach and nanopatterning method of graphite and graphene ...
The engineering of highly organized molecular architectures has attracted strong interest because of...
We report on the synthesis and characterization of metal-containing multicomponent, hydrogen-bonded ...
The self-organization of supramolecular structures, in particular gold-containing hydrogen-bonded ro...
The self-organization of multicomponent tetrarosette assemblies into ordered nanostructures on graph...
In the present work, the formation of silver and copper nanostructures on highly oriented pyrolytic ...
The controlled formation of non-covalent bonds (H-bonding, metal-ligand interactions) is the key ing...
Adequate control over the structures of molecular building blocks plays an important role in the fab...
In this thesis, we present Scanning Tunneling Microscopy investigations of two-dimensional supramole...
The synthesis of spherical gold nanoparticle assemblies with multicomponent double rosette molecular...
Discrete and multicomponent nanoscale noncovalent assemblies on surfaces featuring polygonal porous ...
Self-assembly of organic molecules represents an efficient and convenient bottom-up approach for the...
A bottom-up fabrication of nanometer-scale dendritic structures via the growth of isolated, nanosize...
The influence of the substrate on the morphology of 2D and 3D superlattices made of 5.8 nm silver su...
The first example of a simultaneous threecomponent assembly on surfaces mediated by triple H-bonding...
A convenient covalent functionalization approach and nanopatterning method of graphite and graphene ...
The engineering of highly organized molecular architectures has attracted strong interest because of...
We report on the synthesis and characterization of metal-containing multicomponent, hydrogen-bonded ...
The self-organization of supramolecular structures, in particular gold-containing hydrogen-bonded ro...
The self-organization of multicomponent tetrarosette assemblies into ordered nanostructures on graph...
In the present work, the formation of silver and copper nanostructures on highly oriented pyrolytic ...
The controlled formation of non-covalent bonds (H-bonding, metal-ligand interactions) is the key ing...
Adequate control over the structures of molecular building blocks plays an important role in the fab...
In this thesis, we present Scanning Tunneling Microscopy investigations of two-dimensional supramole...
The synthesis of spherical gold nanoparticle assemblies with multicomponent double rosette molecular...
Discrete and multicomponent nanoscale noncovalent assemblies on surfaces featuring polygonal porous ...
Self-assembly of organic molecules represents an efficient and convenient bottom-up approach for the...
A bottom-up fabrication of nanometer-scale dendritic structures via the growth of isolated, nanosize...
The influence of the substrate on the morphology of 2D and 3D superlattices made of 5.8 nm silver su...
The first example of a simultaneous threecomponent assembly on surfaces mediated by triple H-bonding...
A convenient covalent functionalization approach and nanopatterning method of graphite and graphene ...
The engineering of highly organized molecular architectures has attracted strong interest because of...