Polymeric thin films patterned with honeycomb structures were prepared from poly(x-chlorostyrene) and statistical poly(x-chlorostyrene-co-styrene) copolymers by static breath figure method. Each polymeric sample was synthesized by free radical polymerization and its solution in tetrahydrofuran cast on glass wafers under 90% relative humidity (RH). The effect of the chorine substitution in the topography and conformational entropy was evaluated. The entropy of each sample was calculated by using Voronoi tessellation. The obtained results revealed that these materials could be a suitable toolbox to develop a honeycomb patterns with a wide range of pore sizes for a potential use in contact guidance induced culture.This research was funded by t...
We report on the preparation of functional polymer surfaces with controlled topography by using the ...
A hierarchically structured platform was obtained from spontaneous self-assembly of a poly(styrene)-...
Employing amphiphilic block copolymers in a casting process to obtain honeycomb-structured films via...
Polymeric thin films patterned with honeycomb structures were prepared from poly(x-chlorostyrene) an...
The “breath figures” method provides an efficient and cost-effective method to produce highly ordere...
© 2013 Dr. Zhou ZhangPolymeric films with uniform porous patterns and narrow pore size distributions...
AbstractSince its introduction in 1994, the preparation of ordered porous polymer films by the breat...
In recent times, it was divulged that highly ordered honeycomb structured porous films from a variet...
The breath figure method, which is used to form porous films from water droplet templates, has attra...
Employing amphiphilic block copolymers in a casting process to obtain honeycomb-structured films via...
Honeycomb structured porous materials were formed using four different casting variations of the wat...
Background: This study investigated the preparation of ordered patterned surfaces and/or microsphere...
Ce travail de thèse de doctorat vise à l’élaboration de surfaces poreuses hiérarchiquement structuré...
International audienceIn the present work, we show that Cu(0)-mediated controlled radical polymeriza...
none3The generation of ordered porous polymer structures by the breath figures (BFs) method has long...
We report on the preparation of functional polymer surfaces with controlled topography by using the ...
A hierarchically structured platform was obtained from spontaneous self-assembly of a poly(styrene)-...
Employing amphiphilic block copolymers in a casting process to obtain honeycomb-structured films via...
Polymeric thin films patterned with honeycomb structures were prepared from poly(x-chlorostyrene) an...
The “breath figures” method provides an efficient and cost-effective method to produce highly ordere...
© 2013 Dr. Zhou ZhangPolymeric films with uniform porous patterns and narrow pore size distributions...
AbstractSince its introduction in 1994, the preparation of ordered porous polymer films by the breat...
In recent times, it was divulged that highly ordered honeycomb structured porous films from a variet...
The breath figure method, which is used to form porous films from water droplet templates, has attra...
Employing amphiphilic block copolymers in a casting process to obtain honeycomb-structured films via...
Honeycomb structured porous materials were formed using four different casting variations of the wat...
Background: This study investigated the preparation of ordered patterned surfaces and/or microsphere...
Ce travail de thèse de doctorat vise à l’élaboration de surfaces poreuses hiérarchiquement structuré...
International audienceIn the present work, we show that Cu(0)-mediated controlled radical polymeriza...
none3The generation of ordered porous polymer structures by the breath figures (BFs) method has long...
We report on the preparation of functional polymer surfaces with controlled topography by using the ...
A hierarchically structured platform was obtained from spontaneous self-assembly of a poly(styrene)-...
Employing amphiphilic block copolymers in a casting process to obtain honeycomb-structured films via...