Employing amphiphilic block copolymers in a casting process to obtain honeycomb-structured films via breath figures leads to a suborder of these porous films. A thermoresponsive block copolymer, polystyrene-block-poly(N-isopropyl acrylamide), was synthesized and used to test the arrangement of both blocks within the honeycomb-structured films. Contact angle measurements reveal that the surface of these films has a different composition compared to the structure of the pores. The pores were found to be enriched in hydrophilic sequences showing stimuli-responsive behavior, whereas the surface reacts like a typical hydrophobic porous film
none3The generation of ordered porous polymer structures by the breath figures (BFs) method has long...
The breath figure method, which is used to form porous films from water droplet templates, has attra...
The synthesis of polystyrene-block-poly(N,N-dimethylacrylamide) (PS-b-PDMA) via RAFT polymerization ...
Employing amphiphilic block copolymers in a casting process to obtain honeycomb-structured films via...
In recent times, it was divulged that highly ordered honeycomb structured porous films from a variet...
Honeycomb-structured, porous films with pore sizes ranging from 200 nm to 7 mu m were prepared with ...
Honeycomb structured porous materials were formed using four different casting variations of the wat...
International audienceNowadays, a challenge in the preparation of hierarchically ordered materials i...
AbstractSince its introduction in 1994, the preparation of ordered porous polymer films by the breat...
In the present work, we show that Cu(0)-mediated controlled radical polymerization is a suitable met...
Herein, a facile water-assisted templating approach, the so-called breath figures method, has been e...
In the present work, we have investigated the effect of the chemical structure, concentration and so...
International audienceHoneycomb-patterned porous films with good surface wettability have great pote...
ABSTRACT: We have reported an interesting method, named reverse breath figure, for the preparation o...
Honeycomb-structured porous films were prepared using customized amphiphilic block copolymers, synth...
none3The generation of ordered porous polymer structures by the breath figures (BFs) method has long...
The breath figure method, which is used to form porous films from water droplet templates, has attra...
The synthesis of polystyrene-block-poly(N,N-dimethylacrylamide) (PS-b-PDMA) via RAFT polymerization ...
Employing amphiphilic block copolymers in a casting process to obtain honeycomb-structured films via...
In recent times, it was divulged that highly ordered honeycomb structured porous films from a variet...
Honeycomb-structured, porous films with pore sizes ranging from 200 nm to 7 mu m were prepared with ...
Honeycomb structured porous materials were formed using four different casting variations of the wat...
International audienceNowadays, a challenge in the preparation of hierarchically ordered materials i...
AbstractSince its introduction in 1994, the preparation of ordered porous polymer films by the breat...
In the present work, we show that Cu(0)-mediated controlled radical polymerization is a suitable met...
Herein, a facile water-assisted templating approach, the so-called breath figures method, has been e...
In the present work, we have investigated the effect of the chemical structure, concentration and so...
International audienceHoneycomb-patterned porous films with good surface wettability have great pote...
ABSTRACT: We have reported an interesting method, named reverse breath figure, for the preparation o...
Honeycomb-structured porous films were prepared using customized amphiphilic block copolymers, synth...
none3The generation of ordered porous polymer structures by the breath figures (BFs) method has long...
The breath figure method, which is used to form porous films from water droplet templates, has attra...
The synthesis of polystyrene-block-poly(N,N-dimethylacrylamide) (PS-b-PDMA) via RAFT polymerization ...