International audienceThe strain rate effect on large strain dissipation and behavior recovery are presented to understand the toughening effect of silica nanoparticles in nanohybrid hydrogels. Such nanohybrid gels combine a poly(N,N-dimethylacrylamide) (PDMA) covalent network and physical interactions by adsorption of polymer chains at the silica nanoparticle surface. A series of model nanohybrid gels has been designed to obtain a well-controlled architecture. First insights on the structure (SANS) demonstrated that silica nanoparticles were well-dispersed in the gel, including after cyclic mechanical loading. The characteristic times involved in the nanoparticle/polymer association were investigated by large strain mechanical cycling vary...
International audienceNanohybrid gels based on poly(acrylamide-co-N,N-dimethylacrylamide), P(AAm-co-...
For polymer-particle composites, limited thermodynamic compatibility of polymers and particles often...
Hydrogels are materials used in a variety of applications, ranging from tissue engineering to drug d...
The strain rate effect on large strain dissipation and behavior recovery are presented to understand...
International audienceNano-hybrid hydrogels were prepared by cross-linking polymerization of N,N-dim...
Model hybrid hydrogels reinforced by silica nanoparticles were designed by polymerizing and cross-li...
The dissipative property is crucial to the toughness and recovery of hydrogels. In our investigation...
We are investigating the consequences of the introduction of inorganic nanoparticles in a polymer hy...
Model hybrid hydrogels reinforced by silica nanoparticles were carefully designed to selectively tun...
The understanding of nanoscale fillers in polymeric materials is of the utmost importance for the pe...
Nous étudions les relations structure/propriétés d hydrogels contenant des nanoparticules inorganiqu...
Although double network (DN) hydrogels are extremly tough, they are irreversibly softened during lar...
The polymer network of a nanocomposite (NC) hydrogel is physically crosslinked by nanoclay. Recently...
For polymer-particle composites, limited thermodynamic compatibility of polymers and particles often...
International audienceNanohybrid gels based on poly(acrylamide-co-N,N-dimethylacrylamide), P(AAm-co-...
For polymer-particle composites, limited thermodynamic compatibility of polymers and particles often...
Hydrogels are materials used in a variety of applications, ranging from tissue engineering to drug d...
The strain rate effect on large strain dissipation and behavior recovery are presented to understand...
International audienceNano-hybrid hydrogels were prepared by cross-linking polymerization of N,N-dim...
Model hybrid hydrogels reinforced by silica nanoparticles were designed by polymerizing and cross-li...
The dissipative property is crucial to the toughness and recovery of hydrogels. In our investigation...
We are investigating the consequences of the introduction of inorganic nanoparticles in a polymer hy...
Model hybrid hydrogels reinforced by silica nanoparticles were carefully designed to selectively tun...
The understanding of nanoscale fillers in polymeric materials is of the utmost importance for the pe...
Nous étudions les relations structure/propriétés d hydrogels contenant des nanoparticules inorganiqu...
Although double network (DN) hydrogels are extremly tough, they are irreversibly softened during lar...
The polymer network of a nanocomposite (NC) hydrogel is physically crosslinked by nanoclay. Recently...
For polymer-particle composites, limited thermodynamic compatibility of polymers and particles often...
International audienceNanohybrid gels based on poly(acrylamide-co-N,N-dimethylacrylamide), P(AAm-co-...
For polymer-particle composites, limited thermodynamic compatibility of polymers and particles often...
Hydrogels are materials used in a variety of applications, ranging from tissue engineering to drug d...