The transport coefficients of dense polymeric fluids are approximately calculated from the microscopic intermolecular forces. The following finite molecular weight effects are discussed within the polymer-mode-coupling theory (PMC) and compared to the corresponding reptation/tube ideas: constraint release mechanism, spatial inhomogeneity of the entanglement constraints, and tracer polymer shape fluctuations. The entanglement corrections to the single polymer Rouse dynamics are shown to depend on molecular weight via the ratio N/Ne, where the entanglement degree of polymerization, Ne, can be measured from the plateau shear modulus
Using many-body dissipative particle dynamics (MDPD), polymer solutions with concentrations spanning...
By means of computer simulations and solution of the equations of the mode coupling theory (MCT), we...
Following the Flory ideality hypothesis intrachain and interchain excluded-volume interactions are s...
The predictions of polymer mode coupling theory for the finite size corrections to the transport coe...
Recently a mode coupling theory for the dynamics of solutions and melts of entangled linear chain po...
A mode-coupling theory for dense polymeric systems is developed which unifyingly incorporates the se...
510 p.In the type of research I propose, I look at polymer phusics from a different angle: I conside...
It is well-known that the packing model (Fetters and co-workers) shows the relationship between micr...
We revisit the nonuniversal aspect of polymer dynamics by considering both new and existing data on ...
We show that state-of-the-art tube models overestimate the influence of contour length fluctuations ...
We revisit the nonuniversal aspect of polymer dynamics by considering both new and existing data on ...
ABSTRACT: We use molecular dynamics simulations of the Kremer− Grest (KG) bead−spring model of polym...
We present large-scale molecular dynamics simulations for a coarse-grained model of polymer melts in...
Tube models have achieved spectacular success for predictions of the linear rheology of entangled po...
The dynamics of entangled ¯exible polymers is dominated by physics general to many chemical systems....
Using many-body dissipative particle dynamics (MDPD), polymer solutions with concentrations spanning...
By means of computer simulations and solution of the equations of the mode coupling theory (MCT), we...
Following the Flory ideality hypothesis intrachain and interchain excluded-volume interactions are s...
The predictions of polymer mode coupling theory for the finite size corrections to the transport coe...
Recently a mode coupling theory for the dynamics of solutions and melts of entangled linear chain po...
A mode-coupling theory for dense polymeric systems is developed which unifyingly incorporates the se...
510 p.In the type of research I propose, I look at polymer phusics from a different angle: I conside...
It is well-known that the packing model (Fetters and co-workers) shows the relationship between micr...
We revisit the nonuniversal aspect of polymer dynamics by considering both new and existing data on ...
We show that state-of-the-art tube models overestimate the influence of contour length fluctuations ...
We revisit the nonuniversal aspect of polymer dynamics by considering both new and existing data on ...
ABSTRACT: We use molecular dynamics simulations of the Kremer− Grest (KG) bead−spring model of polym...
We present large-scale molecular dynamics simulations for a coarse-grained model of polymer melts in...
Tube models have achieved spectacular success for predictions of the linear rheology of entangled po...
The dynamics of entangled ¯exible polymers is dominated by physics general to many chemical systems....
Using many-body dissipative particle dynamics (MDPD), polymer solutions with concentrations spanning...
By means of computer simulations and solution of the equations of the mode coupling theory (MCT), we...
Following the Flory ideality hypothesis intrachain and interchain excluded-volume interactions are s...