Replication-based nanofabrication techniques offer rapid, cost effective ways to produce nanostructured devices for a host of applications in engineering, biological research and beyond. In this work we developed a method to replicate ultra high aspect ratio (UHAR) nanopillars by injection molding with failure rates lower than one pillar in a thousand. We provide a review of the literature in which replication of difficult micro- and nanostructures is facilitated through the use of different tooling materials and surface coatings, before describing the non-adhesive surface coatings which we used to translate a previously developed technique from low to high aspect ratios. This development involved a systematic study of nine different surfac...
Polymer surfaces having micro-nanostructures can be produced using injection molding and hot embossi...
Arrays of high aspect-ratio (AR) nano-pillars have attracted a lot of interest for various applicati...
A novel, simple and in situ hard mask technology that can be used to develop high aspect ratio silic...
Injection moulding is a proven technology for high-throughput production of nanostructures, but repl...
Injection moulding is a proven technology for high-throughput production of nanostructures, but repl...
Hybrid polymeric inlays, patterned by nanoimprint lithography, are used to rapidly mass replicate pi...
We present simple methods for fabricating high aspect-ratio polymer nanostructures on a solid substr...
We present simple methods for fabricating high aspect-ratio polymer nanostructures on a solid substr...
The defined fabrication of nanostructures on surfaces for the nanosciences today largely relies on t...
A new ultraviolet (UV) curable mold consisting of fanctionalized polyurethane with acrylate group (M...
A combination of different materials and processes was used to create high aspect ratio nanostructur...
There is an increasing demand for nanostructured polymeric surfaces for many scientific and commerci...
The industrial interest in the patterning of polymeric surfaces at the micro/nanoscale to include ne...
The composition and surface properties of tooling materials become more critical as the size of the ...
Micro injection molding is in great demand due to its efficiency and applicability for industry. Pol...
Polymer surfaces having micro-nanostructures can be produced using injection molding and hot embossi...
Arrays of high aspect-ratio (AR) nano-pillars have attracted a lot of interest for various applicati...
A novel, simple and in situ hard mask technology that can be used to develop high aspect ratio silic...
Injection moulding is a proven technology for high-throughput production of nanostructures, but repl...
Injection moulding is a proven technology for high-throughput production of nanostructures, but repl...
Hybrid polymeric inlays, patterned by nanoimprint lithography, are used to rapidly mass replicate pi...
We present simple methods for fabricating high aspect-ratio polymer nanostructures on a solid substr...
We present simple methods for fabricating high aspect-ratio polymer nanostructures on a solid substr...
The defined fabrication of nanostructures on surfaces for the nanosciences today largely relies on t...
A new ultraviolet (UV) curable mold consisting of fanctionalized polyurethane with acrylate group (M...
A combination of different materials and processes was used to create high aspect ratio nanostructur...
There is an increasing demand for nanostructured polymeric surfaces for many scientific and commerci...
The industrial interest in the patterning of polymeric surfaces at the micro/nanoscale to include ne...
The composition and surface properties of tooling materials become more critical as the size of the ...
Micro injection molding is in great demand due to its efficiency and applicability for industry. Pol...
Polymer surfaces having micro-nanostructures can be produced using injection molding and hot embossi...
Arrays of high aspect-ratio (AR) nano-pillars have attracted a lot of interest for various applicati...
A novel, simple and in situ hard mask technology that can be used to develop high aspect ratio silic...