Growth and morphology of an aluminum (Al) contact on a poly(3-hexylthiophene) (P3HT) thin film are investigated with X-ray methods and related to the interactions at the Al:P3HT interface. Grazing incidence small-angle scattering (GISAXS) is applied in situ during Al sputter deposition to monitor the growth of the layer. A growth mode is found, in which the polymer surface is wetted and rapidly covered with a continuous layer. This growth type results in a homogeneous film without voids and is explained by the strong chemical interaction between Al and P3HT, which suppresses the formation of three-dimensional cluster structures. A corresponding three stage growth model (surface bonding, agglomeration, and layer growth) is derived. X-ray ref...
Poster presented at the DGP Verhandlungen, held in Berlin (Germany) on March 15-20th, 2015.Although ...
Abstract. The morphology and grown mechanism of aluminum films from 3nm to 30nm in thickness onto th...
The reproducible low-cost fabrication of functional polymer–metal interfaces via self-assembly is of...
The formation of metal/organic interfaces is a complicated process involving chemical interaction, p...
Poster presented at the 16th International Conference on Small-Angle Scattering, held on 13-18th Sep...
Large-scale fabrication of metal cluster layers for usage in sensor applications and photovoltaics i...
The effects of thin film nucleation and initial growth on roughness, chemistry and thermomechanical ...
Aluminium thin layers thermally evaporated on polyethylene terephthalate (PET) films were sputter et...
One layer at a time: A proposed growth mechanism of Al2O 3 atomic layer deposition on a polystyrene ...
We study the growth morphology of thin macrostructure films which is known to be largely affected by...
Tailoring the polymer–metal interface is crucial for advanced material design. Vacuum deposition met...
The chemistry of surfaces and interfaces formed by polymers and metals have been studied by surface ...
Industrial polyethylene terephthalate (PET) films have been metallized by aluminium evaporation in t...
The formation of the interface between thermally evaporated metals (aluminium, copper) and polymers ...
The nucleation and initial stages of growth of aluminium oxide deposited on two different polymer su...
Poster presented at the DGP Verhandlungen, held in Berlin (Germany) on March 15-20th, 2015.Although ...
Abstract. The morphology and grown mechanism of aluminum films from 3nm to 30nm in thickness onto th...
The reproducible low-cost fabrication of functional polymer–metal interfaces via self-assembly is of...
The formation of metal/organic interfaces is a complicated process involving chemical interaction, p...
Poster presented at the 16th International Conference on Small-Angle Scattering, held on 13-18th Sep...
Large-scale fabrication of metal cluster layers for usage in sensor applications and photovoltaics i...
The effects of thin film nucleation and initial growth on roughness, chemistry and thermomechanical ...
Aluminium thin layers thermally evaporated on polyethylene terephthalate (PET) films were sputter et...
One layer at a time: A proposed growth mechanism of Al2O 3 atomic layer deposition on a polystyrene ...
We study the growth morphology of thin macrostructure films which is known to be largely affected by...
Tailoring the polymer–metal interface is crucial for advanced material design. Vacuum deposition met...
The chemistry of surfaces and interfaces formed by polymers and metals have been studied by surface ...
Industrial polyethylene terephthalate (PET) films have been metallized by aluminium evaporation in t...
The formation of the interface between thermally evaporated metals (aluminium, copper) and polymers ...
The nucleation and initial stages of growth of aluminium oxide deposited on two different polymer su...
Poster presented at the DGP Verhandlungen, held in Berlin (Germany) on March 15-20th, 2015.Although ...
Abstract. The morphology and grown mechanism of aluminum films from 3nm to 30nm in thickness onto th...
The reproducible low-cost fabrication of functional polymer–metal interfaces via self-assembly is of...