The Journal of Chemical Physics · 2006 · 53 citations · 32 references
EngineeringFluid MechanicsMechanical EngineeringMicrorheologySoft MatterI. Spherical PhaseBlock CopolymersPolymer PhysicRheologyElectric FieldBlock Copolymer MeltBiophysicsMaterials ScienceMultiphase FlowPolymer MeltRheological Constitutive EquationBlock Co-polymersPolymer SciencePolymer Self-assemblyPolymer ModelingCell Dynamics Simulation
Cell dynamics simulation is used to investigate pathways of sphere-to-cylinder transition in block copolymer melt under applied simple shear flow and electric field. Both fields can induce the transition when their strength is above some critical value. At weak fields the spherical phase is preserved, with spheres being deformed into ellipsoids. Weak shear flow is found to improve order in the spherical phase. Observed sliding of layers of spheres under shear is very similar to the experimental finding by Hamley et al. [J. Chem. Phys. 108, 6929 (1998)]. The kinetic pathways are sensitive to the degree of microphase separation in the system and hence affected by temperature. The details of the pathways are described by means of Minkowski functionals.
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The physics of block copolymers
Choice Reviews Online · 1999 · 1.6K citations
Cell dynamical system approach to block copolymers
M. Bahiana, Y. Oono · Physical Review A · 1990 · 272 citations