English

Anomalous Structure and Scaling of Ring Polymer Brushes

Soft Condensed Matter 2015-05-28 v1 Materials Science Statistical Mechanics

Abstract

A comparative simulation study of polymer brushes formed by grafting at a planar surface either flexible linear polymers (chain length NLN_L) or (non-catenated) ring polymers (chain length NR=2NLN_R=2 N_L) is presented. Two distinct off-lattice models are studied, one by Monte Carlo methods, the other by Molecular Dynamics, using a fast implementation on graphics processing units (GPUs). It is shown that the monomer density profiles ρ(z)\rho(z) in the zz-direction perpendicular to the surface for rings and linear chains are practically identical, ρR(2NL,z)=ρL(NL,z)\rho_R(2 N_L, z)=\rho_L(N_L, z). The same applies to the pressure, exerted on a piston at hight z, as well. While the gyration radii components of rings and chains in zz-direction coincide, too, and increase linearly with NLN_L, the transverse components differ, even with respect to their scaling properties: Rgxy(L)NL1/2R_{gxy}^{(L)} \propto N_L^{1/2}, Rgxy(R)NL0.4R_{gxy}^{(R)} \propto N_L^{0.4}. These properties are interpreted in terms of the statistical properties known for ring polymers in dense melts.

Keywords

Cite

@article{arxiv.1104.4943,
  title  = {Anomalous Structure and Scaling of Ring Polymer Brushes},
  author = {Daniel Reith and Andrey Milchev and Peter Virnau and Kurt Binder},
  journal= {arXiv preprint arXiv:1104.4943},
  year   = {2015}
}

Comments

13 pages, 4 figures

R2 v1 2026-06-21T17:58:52.308Z