English

Renormalized One-loop Theory of Correlations in Disordered Diblock Copolymers

Soft Condensed Matter 2015-05-28 v1

Abstract

A renormalized one-loop theory (ROL) is used to calculate corrections to the random phase approximation (RPA) for the structure factor \Sc(q)\Sc(q) in disordered diblock copolymer melts. Predictions are given for the peak intensity S(q)S(q^{\star}), peak position qq^{\star}, and single-chain statistics for symmetric and asymmetric copolymers as functions of χN\chi N, where χ\chi is the Flory-Huggins interaction parameter and NN is the degree of polymerization. The ROL and Fredrickson-Helfand (FH) theories are found to yield asymptotically equivalent results for the dependence of the peak intensity S(q)S(q^{\star}) upon χN\chi N for symmetric diblock copolymers in the limit of strong scattering, or large χN\chi N, but yield qualitatively different predictions for symmetric copolymers far from the ODT and for asymmetric copolymers. The ROL theory predicts a suppression of S(q)S(q^\star) and a decrease of qq^{\star} for large values of χN\chi N, relative to the RPA predictions, but an enhancement of S(q)S(q^{\star}) and an increase in qq^{\star} for small χN\chi N (χN<5\chi N < 5). By separating intra- and inter-molecular contributions to S1(q)S^{-1}(q), we show that the decrease in qq^{\star} near the ODT is caused by the qq dependence of the intermolecular direct correlation function, and is unrelated to any change in single-chain statistics, but that the increase in qq^{\star} at small values of χN\chi N is a result of non-Gaussian single-chain statistics.

Keywords

Cite

@article{arxiv.1105.2241,
  title  = {Renormalized One-loop Theory of Correlations in Disordered Diblock Copolymers},
  author = {Jian Qin and Piotr Grzywacz and David C. Morse},
  journal= {arXiv preprint arXiv:1105.2241},
  year   = {2015}
}

Comments

16 pages, 13 figures, submitted to J. Chem. Phys

R2 v1 2026-06-21T18:05:49.377Z