arXiv · 1707.06594
Isostaticity and the solidification of semiflexible polymer melts
Abstract
Using molecular dynamics simulations of a tangent-soft-sphere bead-spring polymer model, we examine the degree to which semiflexible polymer melts solidify at isostaticity. Flexible and stiff chains crystallize when they are isostatic as defined by appropriate degree-of-freedom-counting arguments. Semiflexible chains also solidify when isostatic if a generalized isostaticity criterion that accounts for the slow freezing out of configurational freedom as chain stiffness increases is employed. The dependence of the average coordination number at solidification $Z(T_s)$ on chains' characteristic ratio $C_\infty$ has the same functional form [$Z \simeq a - b\ln(C_\infty)$] as the dependence of the average coordination number at jamming $Z(ϕ_J)$ on $C_\infty$ in athermal systems, suggesting that jamming-related phenomena play a significant role in thermal polymer solidification.
Explore related subjects
Keep this discovery
Christian O. Plaza-Rivera, Hong T. Nguyen, Robert S. Hoy. 2017-07-20. Isostaticity and the solidification of semiflexible polymer melts. https://arxiv.org/abs/1707.06594
Cite the original work for its findings. Save a collection to share your selection of sources.