Block Copolymers in Electric Fields: A Comparison of Single-Mode and Self-Consistent Field Approximations
arXiv:cond-mat/0508179 · doi:10.1021/ma051715v
Abstract
We compare two theoretical approaches to dielectric diblock copolymer melts in an external electric field. The first is a relatively simple analytic expansion in the relative copolymer concentration, and includes the full electrostatic contribution consistent with that expansion. It is valid close to the order-disorder transition point, the weak segregation limit. The second employs self-consistent field (SCF) theory and includes the full electrostatic contribution to the free energy at any copolymer segregation. It is more accurate but computationally more intensive. Motivated by recent experiments, we explore a section of the phase diagram in the three-dimensional parameter space of the block architecture, the interaction parameter and the external electric field. The relative stability of the lamellar, hexagonal and distorted body-centered-cubic (bcc) phases is compared within the two models. As function of an increasing electric field, the distorted bcc region in the phase diagram shrinks and disappears above a triple point, at which the lamellar, hexagonal and distorted bcc phases coexist. We examine the deformation of the bcc phase under the influence of the external field. While the elongation of the spheres is larger in the one-mode expansion than that predicted by the full SCF theory, the general features of the schemes are in satisfactory agreement. This indicates the general utility of the simple theory for exploratory calculations.
6 pages, 3 figures, submitted
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
- Structural changes of diblock copolymer melts due to an external electric field: a self-consistent field theory study
Cited by in corpus (10)
- Colloquium: Phase transitions in polymers and liquids in electric fields
- Self-Consistent-Field Study of the Alignment by an Electric Field of a Cylindrical Phase of Block Copolymer
- Block Copolymer at Nano-Patterned Surfaces
- Stability of Binary Mixtures in Electric Field Gradients
- Coarse Graining in Block Copolymer Films
- Statistical mechanical description of liquid systems in electric field
- Orienting thin films of lamellar block copolymer: the combined effect of mobile ions and electric field
- Recent advances in liquid mixtures in electric fields
- Maxwell stress in fluid mixtures
- Dynamics and electro-rheology of sheared immiscible fluid mixtures