Influence of topology on rheological properties of polymer ring melts

R Ranajay Datta (Institute of Physics, Johannes Gutenberg University , Staudingerweg 9, 55128 Mainz,) P Peter Virnau (Johannes Gutenberg-Universität, Institut für Physik , Mainz,)

Abstract

We investigate with numerical simulations the influence of topology and stiffness on macroscopic rheological properties of polymer melts consisting of unknotted, knotted, or concatenated rings. While melts of flexible, knotted oligomer rings tend to be significantly more viscous than their unknotted counterparts, differences vanish in a low shear rate scenario with increasing degree of polymerization. Melts of catenanes consisting of two rings on the other hand are consistently more viscous than their unconcatenated counterparts. These topology-based differences in rheological properties can be exploited to segregate mixtures of otherwise chemically similar polymers, e.g., in microfluidic devices, which is demonstrated by exposing a blend of flexible knotted and unknotted oligomer rings to channel flow.

Article Details

Volume / Issue Vol. 162, Issue 9
Published March 07, 2025
ISSN 0021-9606
Publisher American Institute of Physics

Journal Info

The Journal of Chemical Physics

American Institute of Physics

ISSN: 0021-9606 Physical Sciences

Authors (2)

R

Ranajay Datta

Institute of Physics, Johannes Gutenberg University , Staudingerweg 9, 55128 Mainz,

P

Peter Virnau

Johannes Gutenberg-Universität, Institut für Physik , Mainz,