English

Glass-like dynamics of the strain-induced coil/helix transition on a permanent polymer network

Soft Condensed Matter 2016-03-23 v1

Abstract

We study the stress response to a step strain of covalently bonded gelatin gels in the temperature range where triple helix reversible crosslink formation is prohibited. We observe slow stress relaxation towards a TT-dependent finite asymptotic level. We show that this is assignable to the strain-induced coil \rightarrow helix transition, previously evidenced by S. Courty, J.L. Gornall and E.M. Terentjev (PNAS, {\bf 102}, 13453 (2005)), of a fraction of the polymer strands. Relaxation proceeds, in a first stage, according to a stretched exponential dynamics, then crosses over to a terminal simple exponential decay. The respective characteristic times τK\tau_{K} and τf\tau_{f} exhibit an Arrhenius-like TT-dependence with an associated energy E\cal E incompatibly larger than the activation barrier height for the isomerisation process which sets the clock for an elementary coil \to helix transformation event. We tentatively assign this glass-like slowing down of the dynamics to the long-range couplings due to the mechanical noise generated by the local elementary events in this random elastic medium.

Keywords

Cite

@article{arxiv.1601.07706,
  title  = {Glass-like dynamics of the strain-induced coil/helix transition on a permanent polymer network},
  author = {O. Ronsin and C. Caroli and T Baumberger},
  journal= {arXiv preprint arXiv:1601.07706},
  year   = {2016}
}

Comments

8 pages, 7 figures