Hydrophobic isoporous membranes were fabricated using the “breath figure” method from polystyrene stars synthesized via ATRP. The living polymer chain ends at the surface of the films were then used, without further modification, in a “grafting-from” approach to grow surface-linked polyglycidyl methacrylate chains under conditions that maintained the regular honeycomb structure. This versatile functional surface was then used as a platform to build a small library of surfaces using a variety of simple chemistries: (i) the acid hydrolysis of the epoxide to form bis-alcohol groups and (ii) utilizing the “click-like” epoxide−amine reaction to functionalize the surface with a model biomolecule—(biotinamido)pentylamine. The successful modificati...
AbstractChemical grafting of small molecule reagents onto polymeric fibrous materials, like paper, h...
Inspired by biological attachment systems, we fabricated the honeycomb structural films with differe...
International audienceChemical grafting of small molecule reagents onto polymeric fibrous materials,...
In this study, surface modification of both organic and inorganic substrates (in terms of cellulose ...
cited By 48International audienceHighly ordered films were prepared by spreading out carbon disulfid...
International audienceHoneycomb-patterned porous films with good surface wettability have great pote...
We report on the preparation of functional polymer surfaces with controlled topography by using the ...
Functional surfaces were generated by a combination of enzymes with polymer membranes composed of an...
In this review, we present a comprehensive summary of the formation of honeycomb microstructures and...
Value-added materials from naturally abundant polymers such as cellulose are of significant importan...
Honeycomb structured porous polymer films were grafted with a thermo-responsive polymer poly(N-isopr...
A convenient way for the achievement of polymer-based solid materials for specific biomedical applic...
In the present work, we show that Cu(0)-mediated controlled radical polymerization is a suitable met...
The development of innovative materials for bone tissue engineering to promote bone regeneration whi...
International audienceA unique triple patterned honeycomb film with CO2-driven reversible wettabilit...
AbstractChemical grafting of small molecule reagents onto polymeric fibrous materials, like paper, h...
Inspired by biological attachment systems, we fabricated the honeycomb structural films with differe...
International audienceChemical grafting of small molecule reagents onto polymeric fibrous materials,...
In this study, surface modification of both organic and inorganic substrates (in terms of cellulose ...
cited By 48International audienceHighly ordered films were prepared by spreading out carbon disulfid...
International audienceHoneycomb-patterned porous films with good surface wettability have great pote...
We report on the preparation of functional polymer surfaces with controlled topography by using the ...
Functional surfaces were generated by a combination of enzymes with polymer membranes composed of an...
In this review, we present a comprehensive summary of the formation of honeycomb microstructures and...
Value-added materials from naturally abundant polymers such as cellulose are of significant importan...
Honeycomb structured porous polymer films were grafted with a thermo-responsive polymer poly(N-isopr...
A convenient way for the achievement of polymer-based solid materials for specific biomedical applic...
In the present work, we show that Cu(0)-mediated controlled radical polymerization is a suitable met...
The development of innovative materials for bone tissue engineering to promote bone regeneration whi...
International audienceA unique triple patterned honeycomb film with CO2-driven reversible wettabilit...
AbstractChemical grafting of small molecule reagents onto polymeric fibrous materials, like paper, h...
Inspired by biological attachment systems, we fabricated the honeycomb structural films with differe...
International audienceChemical grafting of small molecule reagents onto polymeric fibrous materials,...