We propose a hopping mechanism for diffusion of large nonsticky nanoparticles subjected to topological constraints in both unentangled and entangled polymer solids (networks and gels) and entangled polymer liquids (melts and solutions). Probe particles with size larger than the mesh size ax of unentangled polymer networks or tube diameter ae of entangled polymer liquids are trapped by the network or entanglement cells. At long time scales, however, these particles can diffuse by overcoming free energy barrier between neighboring confinement cells. The terminal particle diffusion coefficient dominated by this hopping diffusion is appreciable for particles with size moderately larger than the network mesh size ax or tube diameter ae. Much lar...
Biopolymer networks having a meshwork topology, e.g., extracellular matrix and mucus gels, are ubiqu...
We employ large-scale molecular dynamics computer simulations to study the problem of nanoprobe diff...
Soft matter is a subfield of condensed matter physics including systems, such as polymers, colloidal...
We propose a hopping mechanism for diffusion of large nonsticky nanoparticles subjected to topologic...
Coarse-grained molecular dynamics simulations were performed to investigate the mobility of nanopart...
The incorporation of nanoparticles into polymer networks can lead to improvements in current technol...
The incorporation of nanoparticles into polymer networks can lead to improvements in current technol...
We use scaling theory to derive the time dependence of the mean-square displacement 〈Δr2〉 of a spher...
Polymer nanocomposites, systems of polymers containing nanoparticles (NPs), are fascinating systems ...
The self-diffusion of a single large particle in a fluid is usually described by the classic Stokes–...
International audienceUsing molecular dynamics simulations, we study the static and dynamic properti...
The motion of nanoparticles (NPs) in entangled melts of linear polymers and nonconcatenated ring pol...
We studied the diffusion of gold nanoparticles within entangled solutions and gels formed by high mo...
Polymer nanocomposites are materials comprising of nanometer-sized particles embedded inside polymer...
New microscopic theories for describing dynamics in polymer nanocomposites are developed and applie...
Biopolymer networks having a meshwork topology, e.g., extracellular matrix and mucus gels, are ubiqu...
We employ large-scale molecular dynamics computer simulations to study the problem of nanoprobe diff...
Soft matter is a subfield of condensed matter physics including systems, such as polymers, colloidal...
We propose a hopping mechanism for diffusion of large nonsticky nanoparticles subjected to topologic...
Coarse-grained molecular dynamics simulations were performed to investigate the mobility of nanopart...
The incorporation of nanoparticles into polymer networks can lead to improvements in current technol...
The incorporation of nanoparticles into polymer networks can lead to improvements in current technol...
We use scaling theory to derive the time dependence of the mean-square displacement 〈Δr2〉 of a spher...
Polymer nanocomposites, systems of polymers containing nanoparticles (NPs), are fascinating systems ...
The self-diffusion of a single large particle in a fluid is usually described by the classic Stokes–...
International audienceUsing molecular dynamics simulations, we study the static and dynamic properti...
The motion of nanoparticles (NPs) in entangled melts of linear polymers and nonconcatenated ring pol...
We studied the diffusion of gold nanoparticles within entangled solutions and gels formed by high mo...
Polymer nanocomposites are materials comprising of nanometer-sized particles embedded inside polymer...
New microscopic theories for describing dynamics in polymer nanocomposites are developed and applie...
Biopolymer networks having a meshwork topology, e.g., extracellular matrix and mucus gels, are ubiqu...
We employ large-scale molecular dynamics computer simulations to study the problem of nanoprobe diff...
Soft matter is a subfield of condensed matter physics including systems, such as polymers, colloidal...