Structure and swelling behaviour of hydrophilic epoxy networks prepared from α,ω-diamino terminated poly(oxypropylene)-block-poly(oxyethylene)-block-poly(oxypropylene) and diglycidyl ether of brominated Bisphenol A in dependence on the initial molar ratio of reactive amino and epoxy groups has been investigated by small- and wide-angle X-ray scattering (SAXS and WAXS), differential scanning calorimetry (DSC) and dynamic mechanic analysis (DMA). Anomalous swelling behaviour of the networks in water has been found. The anomaly is attributed to the changing microphase separation in the networks controlled by their composition and crosslinking density, and inhomogeneous swelling on nanometer space scale
International audienceThree different bio-based epoxy prepolymers are studied: one that is synthesiz...
International audienceThree different bio-based epoxy prepolymers are studied: one that is synthesiz...
International audienceWe have investigated the influence of the chemical structure of polyepoxyde ne...
Structure and swelling behaviour of hydrophilic epoxy networks prepared from α,ω-diamino terminated ...
Thermal transitions in epoxy networks prepared by reaction of α, ω-diamino terminated poly(propylene...
A series of stoichiometric hydrophilic epoxy networks was prepared by reaction of a,x-diamino termi...
A series of stoichiometric hydrophilic epoxy networks was prepared by reaction of a,x-diamino termi...
A central goal of this work is study of structure and mechanical and thermal properties of hydrogels...
A series of hydrophilic epoxy networks was prepared by reaction of a,x-diamino terminated polyoxypro...
Effect of a cationic surfactant (myristyltrimethylammonium bromide, C14TAB) on swelling behaviour of...
The synthesis and properties of simultaneously interpenetrating networks (SINs) based on poly(polyet...
Introduction: Polymeric hydrogels are soft materials with a network structure that retain large amou...
This manuscript demonstrates the synthesis of glassy polymer network isomers to control morphologica...
Effect of temperature on nanophase separated structure of epoxy-based hydrogels containing polyoxyet...
International audienceThree different bio-based epoxy prepolymers are studied: one that is synthesiz...
International audienceThree different bio-based epoxy prepolymers are studied: one that is synthesiz...
International audienceThree different bio-based epoxy prepolymers are studied: one that is synthesiz...
International audienceWe have investigated the influence of the chemical structure of polyepoxyde ne...
Structure and swelling behaviour of hydrophilic epoxy networks prepared from α,ω-diamino terminated ...
Thermal transitions in epoxy networks prepared by reaction of α, ω-diamino terminated poly(propylene...
A series of stoichiometric hydrophilic epoxy networks was prepared by reaction of a,x-diamino termi...
A series of stoichiometric hydrophilic epoxy networks was prepared by reaction of a,x-diamino termi...
A central goal of this work is study of structure and mechanical and thermal properties of hydrogels...
A series of hydrophilic epoxy networks was prepared by reaction of a,x-diamino terminated polyoxypro...
Effect of a cationic surfactant (myristyltrimethylammonium bromide, C14TAB) on swelling behaviour of...
The synthesis and properties of simultaneously interpenetrating networks (SINs) based on poly(polyet...
Introduction: Polymeric hydrogels are soft materials with a network structure that retain large amou...
This manuscript demonstrates the synthesis of glassy polymer network isomers to control morphologica...
Effect of temperature on nanophase separated structure of epoxy-based hydrogels containing polyoxyet...
International audienceThree different bio-based epoxy prepolymers are studied: one that is synthesiz...
International audienceThree different bio-based epoxy prepolymers are studied: one that is synthesiz...
International audienceThree different bio-based epoxy prepolymers are studied: one that is synthesiz...
International audienceWe have investigated the influence of the chemical structure of polyepoxyde ne...