Parallel and Perpendicular Lamellae on Corrugated Surfaces
arXiv:cond-mat/0304334 · doi:10.1021/ma034483d
Abstract
We consider the relative stability of parallel and perpendicular lamellar layers on corrugated surfaces. The model can be applied to smectic phases of liquid crystals, to lamellar phases of short-chain amphiphiles and to lamellar phases of long-chain block copolymers. The corrugated surface is modelled by having a single -mode lateral corrugation of a certain height. The lamellae deform close to the surface as a result of chemical interaction with it. The competition between the energetic cost of elastic deformations and the gain in surface energy determines whether parallel or perpendicular lamellar orientation (with respect to the surface) is preferred. Our main results are summarized in two phase diagrams, each exhibiting a transition line from the parallel to perpendicular orientations. The phase diagrams depend on the three system parameters: the lamellar natural periodicity, and the periodicity and amplitude of surface corrugations. For a fixed lamellar periodicity (or polymer chain length), the parallel orientation is preferred as the amplitude of surface corrugation decreases and/or its periodicity increases. Namely, for surfaces having small corrugations centered at long wavelengths. For a fixed corrugation periodicity, the parallel orientation is preferred for small corrugation amplitude and/or large lamellae periodicity. Our results are in agreement with recent experimental results carried out on thin block copolymer films of PS-PMMA (polystyrene-polymethylmethacrylate) in the lamellar phase, and in contact with several corrugated surfaces.
12 pages, 5 figures
References in corpus (4)
- Thin Film Diblock Copolymers in Electric Field: Transition from Perpendicular to Parallel Lamellae
- Structural changes in block copolymers: coupling of electric field and mobile ions
- Orienting Ion-Containing Block Copolymers Using AC Electric Field
- Surface induced ordering in thin film diblock copolymers: tilted lamellar phases
Cited by in corpus (8)
- Orientational transitions in symmetric diblock copolymers on rough surfaces
- Defect-free Perpendicular Diblock Copolymer Films: The Synergistic Effect of Surface Topography and Chemistry
- Lamellar Diblock Copolymers on Rough Substrates: Self-consistent Field Theory Studies
- Coarse Graining in Block Copolymer Films
- Lamellar Phases in Nonuniform Electric Fields: Breaking the In-Plane Rotation Symmetry and the Role of Dielectric Constant Mismatch
- Quasiclassical generalized Weierstrass representation and dispersionless DS equation
- The Chain Flexibility Effects on the Self-assembly of Diblock Copolymer in Thin Film
- Interfacial Phenomena of Solvent-diluted Block Copolymers