It is shown that self-assembled hierarchical porosity in organic polymers can be obtained in a facile manner based on pyrolyzed block-copolymer-phenolic resin nanocomposites and that a given starting composition can be post-modified in a wide range from monomodal mesoporous materials to hierarchical micro-mesoporous materials with a high density of pores and large surface area per volume unit (up to 500-600 m(2) g(-1)). For that purpose, self-assembled cured composites are used where phenolic resin is templated by a diblock copolymer poly(4-vinylpyridine)-block-polystyrene (PWP-b-PS). Mild pyrolysis conditions lead only to monomodal mesoscale porosity, as essentially only the PS block is removed (length scale of tens of nanometers), whereas...
Silica materials exist in all shapes and sizes, from crystalline to amorphous networks, from dense t...
Large-mesopore silica films with a narrow pore size distribution and high porosity have been obtaine...
A triazine based disc shaped molecule with two hydrolyzable units, imine and ester groups, was polym...
It is shown that self-assembled hierarchical porosity in organic polymers can be obtained in a facil...
It is shown that self-assembled hierarchical porosity in organic polymers can be obtained in a facil...
It is shown that self-assembled hierarchical porosity in organic polymers can be obtained in a facil...
Porous materials with controlled pore size and large surface area (see Figure) have been prepared by...
We report the preparation of hierarchically porous polymers containing fully interconnected and cont...
A series of novel network and ladder microporous polymers was prepared by conventional nucleophilic ...
Porous materials technology has developed products with a wide variety of pore sizes ranging from 1 ...
International audienceIn this work, monolithic hybrid materials exhibiting both meso- and macropores...
Combination of self-assembly at different length scales leads to structural hierarchies. It offers r...
Due to their ability to self-assemble into a variety of periodic nanostructures, block copolymers al...
Recent experimental methods for fabrication of hierarchically porous and structured composites are r...
Silica materials exist in all shapes and sizes, from crystalline to amorphous networks, from dense t...
Large-mesopore silica films with a narrow pore size distribution and high porosity have been obtaine...
A triazine based disc shaped molecule with two hydrolyzable units, imine and ester groups, was polym...
It is shown that self-assembled hierarchical porosity in organic polymers can be obtained in a facil...
It is shown that self-assembled hierarchical porosity in organic polymers can be obtained in a facil...
It is shown that self-assembled hierarchical porosity in organic polymers can be obtained in a facil...
Porous materials with controlled pore size and large surface area (see Figure) have been prepared by...
We report the preparation of hierarchically porous polymers containing fully interconnected and cont...
A series of novel network and ladder microporous polymers was prepared by conventional nucleophilic ...
Porous materials technology has developed products with a wide variety of pore sizes ranging from 1 ...
International audienceIn this work, monolithic hybrid materials exhibiting both meso- and macropores...
Combination of self-assembly at different length scales leads to structural hierarchies. It offers r...
Due to their ability to self-assemble into a variety of periodic nanostructures, block copolymers al...
Recent experimental methods for fabrication of hierarchically porous and structured composites are r...
Silica materials exist in all shapes and sizes, from crystalline to amorphous networks, from dense t...
Large-mesopore silica films with a narrow pore size distribution and high porosity have been obtaine...
A triazine based disc shaped molecule with two hydrolyzable units, imine and ester groups, was polym...