English

Intramolecular long-range correlations in polymer melts: The segmental size distribution and its moments

Soft Condensed Matter 2009-11-13 v2

Abstract

Presenting theoretical arguments and numerical results we demonstrate long-range intrachain correlations in concentrated solutions and melts of long flexible polymers which cause a systematic swelling of short chain segments. They can be traced back to the incompressibility of the melt leading to an effective repulsion u(s)s/ρR3(s)ce/su(s) \approx s/\rho R^3(s) \approx ce/\sqrt{s} when connecting two segments together where ss denotes the curvilinear length of a segment, R(s)R(s) its typical size, ce1/ρbe3ce \approx 1/\rho be^3 the ``swelling coefficient", bebe the effective bond length and ρ\rho the monomer density. The relative deviation of the segmental size distribution from the ideal Gaussian chain behavior is found to be proportional to u(s)u(s). The analysis of different moments of this distribution allows for a precise determination of the effective bond length bebe and the swelling coefficient cece of asymptotically long chains. At striking variance to the short-range decay suggested by Flory's ideality hypothesis the bond-bond correlation function of two bonds separated by ss monomers along the chain is found to decay algebraically as 1/s3/21/s^{3/2}. Effects of finite chain length are considered briefly.

Keywords

Cite

@article{arxiv.0704.1620,
  title  = {Intramolecular long-range correlations in polymer melts: The segmental size distribution and its moments},
  author = {J. P. Wittmer and P. Beckrich and H. Meyer and A. Cavallo and A. Johner and J. Baschnagel},
  journal= {arXiv preprint arXiv:0704.1620},
  year   = {2009}
}

Comments

50 pages, 13 figures, submitted to PRE