Thin films of block copolymer
- 8 May 1997
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 106 (18) , 7781-7791
- https://doi.org/10.1063/1.473778
Abstract
We develop a numerical method for examining complex morphologies in thin films of block copolymer using self-consistent field theory. Applying the method to confined films of symmetric diblock copolymer, we evaluate the stability of parallel, perpendicular, and mixed lamellar phases. In general, lamellar domains formed by the diblocks are oriented parallel to the film by surface fields. However, their orientation can flip to perpendicular when the natural period of the lamellae is incommensurate with the film thickness. Experiments and Monte Carlo simulations have indicated that mixed lamellar phases may also occur, but for symmetric diblocks, we find these phases to be slightly unstable relative to perpendicular lamellae. Nevertheless, just a small asymmetry in the molecule stabilizes a mixed lamellar phase. Although our work focuses on confined films, we do discuss the behavior that results when films are unconfined.Keywords
This publication has 49 references indexed in Scilit:
- A self-consistent-field approach to surfaces of compressible polymer blendsThe Journal of Chemical Physics, 1996
- Copolymers at surfaces and interfacesCurrent Opinion in Colloid & Interface Science, 1996
- Confinement-Induced Morphological Changes in Diblock Copolymer FilmsLangmuir, 1996
- Testing the Strong-Stretching Assumption in a Block Copolymer MicrostructureMacromolecules, 1995
- The Free Surface of Thin Diblock Copolymer Films: Experimental and Theoretical Investigations on the Formation and Growth of Surface Relief StructuresMacromolecules, 1995
- Stabilizing New Morphologies by Blending Homopolymer with Block CopolymerPhysical Review Letters, 1995
- Lamellar Diblock Copolymer Grain Boundary Morphology. 4. Tilt BoundariesMacromolecules, 1994
- Microphase separation in thin films of the symmetric diblock-copolymer meltThe Journal of Chemical Physics, 1994
- Surface-induced ordering in block copolymer meltsThe Journal of Chemical Physics, 1994
- Surface-Induced Lamellar Ordering in a Hexagonal Phase of Diblock CopolymersMacromolecules, 1994