Thiol-ene and thiol-yne reactions are explored as efficient pathways towards rapid production of diverse monodisperse macroporous and nonporous functional beads. In a straightforward method, polymer beads containing amine, hydroxyl and carboxyl groups have been prepared by reacting a tetrafunctional thiol with a range of mono and/or multifunctional -enes/-ynes containing the desired functional groups. The thiol-ene and thiol-yne reactions have been performed in a simple home-made microfluidic device utilizing thiol and ene/yne monomers at a 1 : 1 ratio of thiol to pi-bond. The porous functional beads were prepared making use of a porogen in combination with a photoinitiator. The optical and scanning electron microscopy images demonstrated m...
| openaire: EC/H2020/| 311705/EU//CUMTASWe introduce rapid replica molding of ordered, high-aspect-r...
This review is devoted to relatively new and promising approach to the synthesis of novel organic co...
A series of thiol-ene (1.1:1 equiv) polymer microbeads (PMBs) were prepared via a high-shear suspens...
Thiol-ene and thiol-yne reactions are explored as efficient pathways towards rapid production of div...
Polymer particles (micro to nano) with tunable functionality have emerged as a promising and viable ...
High variability in properties of thiol-enes makes them ideal material for microfluidic reactors. Su...
Thiol- and yne-functionalized beads were manufactured in a simple microfluidic setup. While CuAAC an...
Within healthcare there is a market pull for biomedical devices that can rapidly perform laboratory ...
Radical mediated thiol-yne polymerization reactions complement the more well-known thiol-ene radical...
The synthesis of crosslinked polymeric microspheres (3.8–15.0 µm) via (2,2,6,6‐tetramethylpiperidin‐...
A series of functional polyethylenes have been simply and efficiently synthesized via the combinatio...
The main objective of this thesis has been the preparation of novel polymer particles and their chem...
Thiol–ene chemistry was exploited in droplet-based microfluidics to fabricate advanced microcapsules...
A novel, rapid and simple method for the preparation of emulsion-templated monoliths in microfluidic...
In this work, we report our findings on the use of radical thiol-ene chemistry for polymer-polymer c...
| openaire: EC/H2020/| 311705/EU//CUMTASWe introduce rapid replica molding of ordered, high-aspect-r...
This review is devoted to relatively new and promising approach to the synthesis of novel organic co...
A series of thiol-ene (1.1:1 equiv) polymer microbeads (PMBs) were prepared via a high-shear suspens...
Thiol-ene and thiol-yne reactions are explored as efficient pathways towards rapid production of div...
Polymer particles (micro to nano) with tunable functionality have emerged as a promising and viable ...
High variability in properties of thiol-enes makes them ideal material for microfluidic reactors. Su...
Thiol- and yne-functionalized beads were manufactured in a simple microfluidic setup. While CuAAC an...
Within healthcare there is a market pull for biomedical devices that can rapidly perform laboratory ...
Radical mediated thiol-yne polymerization reactions complement the more well-known thiol-ene radical...
The synthesis of crosslinked polymeric microspheres (3.8–15.0 µm) via (2,2,6,6‐tetramethylpiperidin‐...
A series of functional polyethylenes have been simply and efficiently synthesized via the combinatio...
The main objective of this thesis has been the preparation of novel polymer particles and their chem...
Thiol–ene chemistry was exploited in droplet-based microfluidics to fabricate advanced microcapsules...
A novel, rapid and simple method for the preparation of emulsion-templated monoliths in microfluidic...
In this work, we report our findings on the use of radical thiol-ene chemistry for polymer-polymer c...
| openaire: EC/H2020/| 311705/EU//CUMTASWe introduce rapid replica molding of ordered, high-aspect-r...
This review is devoted to relatively new and promising approach to the synthesis of novel organic co...
A series of thiol-ene (1.1:1 equiv) polymer microbeads (PMBs) were prepared via a high-shear suspens...