Patterning of micro- and nanoscale topologies and surface properties of polymer devices is of particular importance for a broad range of life science applications, including cell-adhesion assays and highly sensitive bioassays. The manufacturing of such devices necessitates cumbersome multiple-step fabrication procedures and results in surface properties which degrade over time. This critically hinders their wide-spread dissemination. Here, we simultaneously mold and surface energy pattern microstructures in off-stoichiometric thiol-ene by area-selective monomer self-assembly in a rapid micro-reaction injection molding cycle. We replicated arrays of 1,843,650 hydrophilic-in-hydrophobic femtolitre-wells with long-term stable surface propertie...
International audienceThis work describes how selective patterning of hydrophobic and hydrophilic ar...
<p>Modern patterning and fabrication techniques provide powerful opportunities for the preparation o...
The work in this thesis has been focused on developing surfaces for use in biosensor systems, especi...
© 2015 IEEE. We report a novel polymer material formulation and stamp-molding technique that enable ...
Bead-based microwell array technology is growing as an ultrasensitive analysis tool as exemplified b...
A new and easy-to-use method that allows for mold-free and rapid prototyping of microfluidic devices...
In recent years, Teflon-on-glass microwells have been successfully implemented in bead-based digital...
Improving the health and well-being of humankind does not only constitute part of our moral codes, b...
| openaire: EC/H2020/| 311705/EU//CUMTASWe introduce rapid replica molding of ordered, high-aspect-r...
In this work we have developed a simple and robust method to permanently pattern alternating hydroph...
Within healthcare there is a market pull for biomedical devices that can rapidly perform laboratory ...
Thiol-ene and thiol-yne reactions are explored as efficient pathways towards rapid production of div...
We report “nanoRIM”, the first reaction injection molding (RIM) replication method for thermosets ...
In situ tertiary amine-catalyzed thiol-acrylate chemistry was employed to produce hydrophilic microf...
Abstract Thiol self-assembled monolayers (SAMs) are widely used in many nano- and bio-technology app...
International audienceThis work describes how selective patterning of hydrophobic and hydrophilic ar...
<p>Modern patterning and fabrication techniques provide powerful opportunities for the preparation o...
The work in this thesis has been focused on developing surfaces for use in biosensor systems, especi...
© 2015 IEEE. We report a novel polymer material formulation and stamp-molding technique that enable ...
Bead-based microwell array technology is growing as an ultrasensitive analysis tool as exemplified b...
A new and easy-to-use method that allows for mold-free and rapid prototyping of microfluidic devices...
In recent years, Teflon-on-glass microwells have been successfully implemented in bead-based digital...
Improving the health and well-being of humankind does not only constitute part of our moral codes, b...
| openaire: EC/H2020/| 311705/EU//CUMTASWe introduce rapid replica molding of ordered, high-aspect-r...
In this work we have developed a simple and robust method to permanently pattern alternating hydroph...
Within healthcare there is a market pull for biomedical devices that can rapidly perform laboratory ...
Thiol-ene and thiol-yne reactions are explored as efficient pathways towards rapid production of div...
We report “nanoRIM”, the first reaction injection molding (RIM) replication method for thermosets ...
In situ tertiary amine-catalyzed thiol-acrylate chemistry was employed to produce hydrophilic microf...
Abstract Thiol self-assembled monolayers (SAMs) are widely used in many nano- and bio-technology app...
International audienceThis work describes how selective patterning of hydrophobic and hydrophilic ar...
<p>Modern patterning and fabrication techniques provide powerful opportunities for the preparation o...
The work in this thesis has been focused on developing surfaces for use in biosensor systems, especi...