Etched ion-track polycarbonate membranes with conical nanochannels of aspect ratios of ~3000 are coated with Al2O3, TiO2, and SiO2 thin films of thicknesses between 10 and 20 nm by atomic layer deposition (ALD). By combining ion-track technology and ALD, the fabrication of two kinds of functional structures with customized surfaces is presented: (i) arrays of free-standing conical nanotubes with controlled geometry and wall thickness, interesting for, e.g., drug delivery and surface wettability regulation, and (ii) single nanochannel membranes with inorganic surfaces and adjustable isoelectric points for nanofluidic applications
Control over nucleation and growth of multi-walled carbon nanotubes in the nanochannels of porous al...
The construction of inorganic nanostructures with hollow interiors is demonstrated by coating self-a...
Control over nucleation and growth of multi-walled carbon nanotubes in the nanochannels of porous al...
Inorganic nanochannels integrated in solid state membranes as well as nanotubes are of high relevanc...
Polycarbonate etched ion-track membranes with about 30 µm long and 50 nm wide cylindrical channels w...
Nanoscale structuring in confined geometries using atomic layer deposition (ALD) is demonstrated for...
Ion-track etching represents a highly versatile way of introducing artificial pores with diameters d...
We present an optimized approach for the deposition of Al2O3 (as a model secondary material) coating...
In the past decade, nanopores have been developed extensively for various potential applications, an...
Atomic layer deposition (ALD) represents a unique deposition technique that allows to coat uniformly...
Conformal TiO2 films have been deposited onto highly oriented porous alumina arrays to characterise ...
Nanostructured materials may play a significant role in controlled release of pharmacologic agents f...
Low-temperature ozone-assisted atomic layer deposition (ALD) of SiO<sub>2</sub> with four silane der...
Tight ceramic nanofiltration (NF) membranes allow efficient separation of organic matter and ions fo...
In this study flexible TiO 2 coated porous Kapton membranes are presented having el...
Control over nucleation and growth of multi-walled carbon nanotubes in the nanochannels of porous al...
The construction of inorganic nanostructures with hollow interiors is demonstrated by coating self-a...
Control over nucleation and growth of multi-walled carbon nanotubes in the nanochannels of porous al...
Inorganic nanochannels integrated in solid state membranes as well as nanotubes are of high relevanc...
Polycarbonate etched ion-track membranes with about 30 µm long and 50 nm wide cylindrical channels w...
Nanoscale structuring in confined geometries using atomic layer deposition (ALD) is demonstrated for...
Ion-track etching represents a highly versatile way of introducing artificial pores with diameters d...
We present an optimized approach for the deposition of Al2O3 (as a model secondary material) coating...
In the past decade, nanopores have been developed extensively for various potential applications, an...
Atomic layer deposition (ALD) represents a unique deposition technique that allows to coat uniformly...
Conformal TiO2 films have been deposited onto highly oriented porous alumina arrays to characterise ...
Nanostructured materials may play a significant role in controlled release of pharmacologic agents f...
Low-temperature ozone-assisted atomic layer deposition (ALD) of SiO<sub>2</sub> with four silane der...
Tight ceramic nanofiltration (NF) membranes allow efficient separation of organic matter and ions fo...
In this study flexible TiO 2 coated porous Kapton membranes are presented having el...
Control over nucleation and growth of multi-walled carbon nanotubes in the nanochannels of porous al...
The construction of inorganic nanostructures with hollow interiors is demonstrated by coating self-a...
Control over nucleation and growth of multi-walled carbon nanotubes in the nanochannels of porous al...