The relationship between polymer topology and bulk rheology remains a key question in soft matter physics. Architecture-specific constraints (or threadings) are thought to control the dynamics of ring polymers in ring-linear blends, which thus affects the viscosity to range between that of the pure rings and a value larger, but still comparable to, that of the pure linear melt. Here we consider qualitatively different systems of linear and ring polymers, fused together in "chimeric" architectures. The simplest example of this family is a "tadpole"-shaped polymer, a single ring fused to the end of a single linear chain. We show that polymers with this architecture display a threading-induced dynamical transition that substantially slows chai...
We perform large scale three-dimensional molecu-lar dynamics simulations of unlinked and unknot-ted ...
After many years of intense research, most aspects of the motion of entangled polymers have been und...
After many years of intense research, most aspects of the motion of entangled polymers have been und...
The relationship between polymer topology and bulk rheology remains a key question in soft matter ph...
Mixtures of polymers of varying topologies and stiffnesses display complex emergent rheological prop...
Unconcatenated ring polymers in concentrated solutions and melt are remarkably well described as dou...
Unconcatenated ring polymers in concentrated solutions and melt are remarkably well described as dou...
Unconcatenated ring polymers in concentrated solutions and melt are remarkably well described as dou...
A system of highly entangled ring polymers embedded in a gel was studied using Monte Carlo simulatio...
We present results from a direct statistical analysis of long molecular dynamics (MD) trajectories f...
We present results from a direct statistical analysis of long molecular dynamics (MD) trajectories f...
We study catenated ring polymers confined inside channels and slits with Langevin dynamics simulatio...
Adding small amounts of ring polymers to a matrix of their linear counterparts is known to increase ...
We study the dynamics of concentrated, long, semi-flexible, unknotted and unlinked ring polymers emb...
Understanding how topological constraints affect the structure and dynamics of polymers in solution...
We perform large scale three-dimensional molecu-lar dynamics simulations of unlinked and unknot-ted ...
After many years of intense research, most aspects of the motion of entangled polymers have been und...
After many years of intense research, most aspects of the motion of entangled polymers have been und...
The relationship between polymer topology and bulk rheology remains a key question in soft matter ph...
Mixtures of polymers of varying topologies and stiffnesses display complex emergent rheological prop...
Unconcatenated ring polymers in concentrated solutions and melt are remarkably well described as dou...
Unconcatenated ring polymers in concentrated solutions and melt are remarkably well described as dou...
Unconcatenated ring polymers in concentrated solutions and melt are remarkably well described as dou...
A system of highly entangled ring polymers embedded in a gel was studied using Monte Carlo simulatio...
We present results from a direct statistical analysis of long molecular dynamics (MD) trajectories f...
We present results from a direct statistical analysis of long molecular dynamics (MD) trajectories f...
We study catenated ring polymers confined inside channels and slits with Langevin dynamics simulatio...
Adding small amounts of ring polymers to a matrix of their linear counterparts is known to increase ...
We study the dynamics of concentrated, long, semi-flexible, unknotted and unlinked ring polymers emb...
Understanding how topological constraints affect the structure and dynamics of polymers in solution...
We perform large scale three-dimensional molecu-lar dynamics simulations of unlinked and unknot-ted ...
After many years of intense research, most aspects of the motion of entangled polymers have been und...
After many years of intense research, most aspects of the motion of entangled polymers have been und...