Nanometer-sized particles that are well dispersed in a polymer melt, presumably due to strongly favorable particle–polymer interactions, can form fractal structures via polymer bridging, leading ultimately to a nanoparticle (NP) network analogous to a colloidal gel. The linear viscoelastic response of polymer nanocomposites can be quantitatively predicted by a parameter-free model in which the stress is a simple sum of contributions from the polymer matrix and the fractal NP structure linked by bridging polymer chains. The NP contribution is modeled using critical percolation, while the polymer part is enhanced by the presence of particles, owing to hydrodynamic interactions. The phase diagram at the right shows that small NPs are needed to...
When the filler content is higher than a critical threshold, flocculation of nanoparticles in polyme...
In this work we perform molecular-dynamics simulations, both on the coarse-grained and the chemistry...
A survey of the present understanding of particle-filled polymers is presented, as obtained from eit...
We compare the rheological behavior of three classes of polymer nanocomposites (PNCs) to understand ...
It is well accepted that adding nanoparticles (NPs) to polymer melts can result in significant prope...
In this work, the effective mechanical reinforcement of polymeric nanocomposites containing spherica...
This article belongs to the Special Issue Polymer Nanocomposites: Preparation, Characterisation and ...
The effect of small amounts of nanoparticles on the melt-state linear viscoelastic behaviour is inve...
\u3cp\u3eInfluence of nanoparticle (NP) spatial organization on relaxation and mechanical properties...
We investigate the relation between structure and viscoelasticity of model polymer nanocomposite sys...
We investigate the properties of polymer nanocomposites consisting of narrow disperse sphericalnanop...
When the filler content is higher than a critical threshold, flocculation of nanoparticles in polyme...
International audienceWe are presenting a new method of processing polystyrene-silica nanocomposites...
Understanding the mechanism of mechanical reinforcement in glassy polymer nanocomposites is of param...
The aim of this paper is to better understand mechanisms of reinforcement in particular nanocomposit...
When the filler content is higher than a critical threshold, flocculation of nanoparticles in polyme...
In this work we perform molecular-dynamics simulations, both on the coarse-grained and the chemistry...
A survey of the present understanding of particle-filled polymers is presented, as obtained from eit...
We compare the rheological behavior of three classes of polymer nanocomposites (PNCs) to understand ...
It is well accepted that adding nanoparticles (NPs) to polymer melts can result in significant prope...
In this work, the effective mechanical reinforcement of polymeric nanocomposites containing spherica...
This article belongs to the Special Issue Polymer Nanocomposites: Preparation, Characterisation and ...
The effect of small amounts of nanoparticles on the melt-state linear viscoelastic behaviour is inve...
\u3cp\u3eInfluence of nanoparticle (NP) spatial organization on relaxation and mechanical properties...
We investigate the relation between structure and viscoelasticity of model polymer nanocomposite sys...
We investigate the properties of polymer nanocomposites consisting of narrow disperse sphericalnanop...
When the filler content is higher than a critical threshold, flocculation of nanoparticles in polyme...
International audienceWe are presenting a new method of processing polystyrene-silica nanocomposites...
Understanding the mechanism of mechanical reinforcement in glassy polymer nanocomposites is of param...
The aim of this paper is to better understand mechanisms of reinforcement in particular nanocomposit...
When the filler content is higher than a critical threshold, flocculation of nanoparticles in polyme...
In this work we perform molecular-dynamics simulations, both on the coarse-grained and the chemistry...
A survey of the present understanding of particle-filled polymers is presented, as obtained from eit...