Orientational transitions in symmetric diblock copolymers on rough surfaces
arXiv:cond-mat/0504410 · doi:10.1021/ma050806p
Abstract
We present a model addressing the orientation transition of symmetric block copolymers such as PS/PMMA on smooth and rough surfaces. The distortion free energy of parallel and perpendicular lamellar phases in contact with a rough solid surface is calculated as function of the surface roughness amplitude and wavelength, as well as the polymer lamellar periodicity (molecular weight). We find an analytical expression for the orientation transition. This expression is compared and agrees well with recent experiments done with six different polymer molecular weights and surface preparations.
5 pages, 2 figures
References in corpus (3)
Cited by in corpus (6)
- 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
- Lamellar Phases in Nonuniform Electric Fields: Breaking the In-Plane Rotation Symmetry and the Role of Dielectric Constant Mismatch
- Coarse Graining in Block Copolymer Films
- The Chain Flexibility Effects on the Self-assembly of Diblock Copolymer in Thin Film
- Interfacial Phenomena of Solvent-diluted Block Copolymers