| Literature DB >> 16422645 |
M W Matsen1, G H Griffiths, R A Wickham, O N Vassiliev.
Abstract
A partial phase diagram is constructed for diblock copolymer melts using lattice-based Monte Carlo simulations. This is done by locating the order-disorder transition (ODT) with the aid of a recently proposed order parameter and identifying the ordered phase over a wide range of copolymer compositions (0.2<or=f<or=0.8). Consistent with experiments, the disordered phase is found to exhibit direct first-order transitions to each of the ordered morphologies. This includes the spontaneous formation of a perforated-lamellar phase, which presumably forms in place of the gyroid morphology due to finite-size and/or nonequilibrium effects. Also included in our study is a detailed examination of disordered cylinder-forming (f=0.3) diblock copolymers, revealing a substantial degree of pretransitional chain stretching and short-range order that set in well before the ODT, as observed previously in analogous studies on lamellar-forming (f=0.5) molecules.Entities:
Year: 2006 PMID: 16422645 DOI: 10.1063/1.2140286
Source DB: PubMed Journal: J Chem Phys ISSN: 0021-9606 Impact factor: 3.488