November 2023

Journal

Scaling Behavior of Anisotropy Relaxation in Deformed Polymers

By:
Lam, Christopher N; Xu, Wensheng ; Chen, Wei-Ren ; Wang, Zhe ; Stanley, Christopher B; Carrillo, Jan Michael Y; Uhrig, David W; Wang, Weiyu ; Hong, Kunlun ; Liu, Yun; Porcar, Lionel; Do, Changwoo ; Smith, Gregory S; Sumpter, Bobby G; Wang, Yangyang
Journal Name:
Physical Review Letters
Page Number:
117801
Volume:
121
Issue Number:
11
Publication Date:
November 9, 2023
View DOI Listing:
https://doi.org/10.1103/PhysRevLett.121.117801

Abstract

Drawing an analogy to the paradigm of quasielastic neutron scattering, we present a general approach for quantitatively investigating the spatiotemporal dependence of structural anisotropy relaxation in deformed polymers by using small-angle neutron scattering. Experiments and nonequilibrium molecular dynamics simulations on polymer melts over a wide range of molecular weights reveal that their conformational relaxation at relatively high momentum transfer Q and short time can be described by a simple scaling law, with the relaxation rate proportional to Q. This peculiar scaling behavior, which cannot be derived from the classical Rouse and tube models, is indicative of a surprisingly weak direct influence of entanglement on the microscopic mechanism of single-chain anisotropy relaxation.