Abstract The morphologies of a diblock copolymer spherically confined within a homopolymer were investigated by using the static self-consistent field theory method. A homogeneous A-B diblock copolymer sphere was surrounded by a homopolymer C. Upon changing the diblock volume fraction, homopolymer molecular weight and the interaction between the copolymer and its surrounding environment, different morphologies of the sphere were observed. Our calculations confirmed that when the homopolymer molecular weight was high a complete macrophase separation between the copolymer and the homopolymer was obtained. However, when the homopolymer molecular weight was low the homopolymer penetrated into the copolymer microdomains, diluting the diblock cop...
We investigate the nanostructures and phase diagrams of ABC linear triblock copolymers confined in s...
AbstractThe morphologies that block polymers exhibit under various types of confinement are reviewed...
Phase equilibria in block copolymer (AB) + homopolymer (A) blends are considered theoretically in th...
The morphologies of a diblock copolymer spherically confined within a homopolymer were investigated ...
ABSTRACT: We examine weakly segregated blends of AB diblock copolymer and A homopolymer with similar...
Diblock copolymers blended with homopolymer may self-assemble into spherical, cylindrical, or lamell...
The self-assembly of a diblock copolymer melt in a confined regular geometry with a given pore size ...
We present a self-consistent field theory (SCFT) study of spherical micelle formation in a blend of ...
Diblock copolymers have received much attention in recent years due to the unique, highly ordered mi...
The self-assembly of linear ABC triblock copolymer in homopolymer C was studied by the real-space se...
We present a self-consistent Field theory (SCFT) Study of spherical micelle formation in a blend of ...
The phase behavior of strongly segregated AB diblock copolymer and selective C homopolymer blends is...
AB block copolymers can assemble into various nanoscale morphologies such as lamella, cylinder, sphe...
The formation of complex spherical packing phases in binary and ternary diblock copolymer/homopolyme...
We investigate the nanostructures and phase diagrams of ABC linear triblock copolymers confined in s...
AbstractThe morphologies that block polymers exhibit under various types of confinement are reviewed...
Phase equilibria in block copolymer (AB) + homopolymer (A) blends are considered theoretically in th...
The morphologies of a diblock copolymer spherically confined within a homopolymer were investigated ...
ABSTRACT: We examine weakly segregated blends of AB diblock copolymer and A homopolymer with similar...
Diblock copolymers blended with homopolymer may self-assemble into spherical, cylindrical, or lamell...
The self-assembly of a diblock copolymer melt in a confined regular geometry with a given pore size ...
We present a self-consistent field theory (SCFT) study of spherical micelle formation in a blend of ...
Diblock copolymers have received much attention in recent years due to the unique, highly ordered mi...
The self-assembly of linear ABC triblock copolymer in homopolymer C was studied by the real-space se...
We present a self-consistent Field theory (SCFT) Study of spherical micelle formation in a blend of ...
The phase behavior of strongly segregated AB diblock copolymer and selective C homopolymer blends is...
AB block copolymers can assemble into various nanoscale morphologies such as lamella, cylinder, sphe...
The formation of complex spherical packing phases in binary and ternary diblock copolymer/homopolyme...
We investigate the nanostructures and phase diagrams of ABC linear triblock copolymers confined in s...
AbstractThe morphologies that block polymers exhibit under various types of confinement are reviewed...
Phase equilibria in block copolymer (AB) + homopolymer (A) blends are considered theoretically in th...