We employ large-scale molecular dynamics computer simulations to study the problem of nanoprobe diffusion in entangled solutions of linear polymers and unknotted and unconcatenated circular (ring) polymers. By tuning both the diameter of the nanoprobe and the density of the solution, we show that nanoprobes of diameter smaller than the entanglement distance (tube diameter) of the solution display the same (Rouse-like) behavior in solutions of both polymer architectures. Instead, nanoprobes with larger diameters appear to diffuse markedly faster in solutions of rings than in solutions of linear chains. Finally, by analysing the distribution functions of spatial displacements, we find that nanoprobe motion in rings' solutions shows both Gauss...
Understanding how topological constraints affect the structure and dynamics of polymers in solution...
We investigate all-polymer nanocomposites, formed by linear chains and single-chain polymer nanopart...
We studied unentangled poly(ethylene-alt-propylene) (PEP) in a composite with hydrophobic silica par...
We employ large-scale molecular dynamics computer simulations to study the problem of nanoprobe diff...
The motion of nanoparticles (NPs) in entangled melts of linear polymers and nonconcatenated ring pol...
The motion of nanoparticles (NPs) in entangled melts of linear polymers and nonconcatenated ring pol...
We study the dynamics of nanoparticles in semidilute solutions of ring and linear polymers using hyb...
In this paper, we employ molecular dynamics computer simulations to study and compare the statics an...
Nanorod diffusion and polymer dynamics in nanocomposites were investigated by means of molecular dyn...
The effects of entanglement in solutions and melts of unknotted ring polymers have been addressed by...
Polymer nanocomposites are materials comprising of nanometer-sized particles embedded inside polymer...
We investigate the flow-induced linear and ring polymer translocation through nanopores using a hybr...
The effects of entanglement in solutions and melts of unknotted ring polymers have been addressed...
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...
Understanding how topological constraints affect the structure and dynamics of polymers in solution...
We investigate all-polymer nanocomposites, formed by linear chains and single-chain polymer nanopart...
We studied unentangled poly(ethylene-alt-propylene) (PEP) in a composite with hydrophobic silica par...
We employ large-scale molecular dynamics computer simulations to study the problem of nanoprobe diff...
The motion of nanoparticles (NPs) in entangled melts of linear polymers and nonconcatenated ring pol...
The motion of nanoparticles (NPs) in entangled melts of linear polymers and nonconcatenated ring pol...
We study the dynamics of nanoparticles in semidilute solutions of ring and linear polymers using hyb...
In this paper, we employ molecular dynamics computer simulations to study and compare the statics an...
Nanorod diffusion and polymer dynamics in nanocomposites were investigated by means of molecular dyn...
The effects of entanglement in solutions and melts of unknotted ring polymers have been addressed by...
Polymer nanocomposites are materials comprising of nanometer-sized particles embedded inside polymer...
We investigate the flow-induced linear and ring polymer translocation through nanopores using a hybr...
The effects of entanglement in solutions and melts of unknotted ring polymers have been addressed...
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...
Understanding how topological constraints affect the structure and dynamics of polymers in solution...
We investigate all-polymer nanocomposites, formed by linear chains and single-chain polymer nanopart...
We studied unentangled poly(ethylene-alt-propylene) (PEP) in a composite with hydrophobic silica par...