The self-assembly of gyroid-forming diblock copolymers confined in cylindrical geometry is studied using a combination of computer simulations and experiments. The simulations, based on a system qualitatively representative of poly(styrene-b-isoprene), are performed with cylindrical nanopores of different diameter (D) and surface selectivity. The effects of the pore size and surface selectivity on morphology are systematically investigated. Different morphological sequences are predicted for two gyroid-forming diblock copolymers. The experiments are carried out on two gyroid-forming poly(styrene-b-dimethylsiloxane) block copolymer samples confined in the core of continuous core-shell nanofibers of different diameters, which are obtained by ...
The double gyroid network morphology has been the focus of extensive research efforts as one of the ...
Various complex self-assembled morphologies of lamellar- and cylinder-forming block copolymers compr...
The influence of confinement on morphology formation in copolymer systems is an important area of in...
The self-assembly of gyroid-forming diblock copolymers confined in cylindrical geometry is studied u...
Diblock copolymers undergo microphase separation to form various microstructures, for example, lamel...
The self-assembly of gyroid-forming diblock copolymers (diBCPs) confined in spherical cavities was s...
The autonomous organization of components into patterns or structures without human intervention is ...
The autonomous organization of components into patterns or structures without human intervention is ...
Diblock copolymers have received much attention in recent years due to the unique, highly ordered mi...
AB block copolymers can assemble into various nanoscale morphologies such as lamella, cylinder, sphe...
We show that a simple Ginzburg–Landau type theory can predict a tremendous rich “zoo” of diblock cop...
Self-assembly of symmetric ABC three-arm star copolymers confined in cylindrical nanopores is invest...
The self-assembly of diblock copolymer mixtures (A-b-B/A-b-C or A-b-B/B-b-C mixtures) subjected to c...
The double gyroid network morphology has been the focus of extensive research efforts as one of the ...
We have studied structure formation in a confined block copolymer melt by means of dynamic density f...
The double gyroid network morphology has been the focus of extensive research efforts as one of the ...
Various complex self-assembled morphologies of lamellar- and cylinder-forming block copolymers compr...
The influence of confinement on morphology formation in copolymer systems is an important area of in...
The self-assembly of gyroid-forming diblock copolymers confined in cylindrical geometry is studied u...
Diblock copolymers undergo microphase separation to form various microstructures, for example, lamel...
The self-assembly of gyroid-forming diblock copolymers (diBCPs) confined in spherical cavities was s...
The autonomous organization of components into patterns or structures without human intervention is ...
The autonomous organization of components into patterns or structures without human intervention is ...
Diblock copolymers have received much attention in recent years due to the unique, highly ordered mi...
AB block copolymers can assemble into various nanoscale morphologies such as lamella, cylinder, sphe...
We show that a simple Ginzburg–Landau type theory can predict a tremendous rich “zoo” of diblock cop...
Self-assembly of symmetric ABC three-arm star copolymers confined in cylindrical nanopores is invest...
The self-assembly of diblock copolymer mixtures (A-b-B/A-b-C or A-b-B/B-b-C mixtures) subjected to c...
The double gyroid network morphology has been the focus of extensive research efforts as one of the ...
We have studied structure formation in a confined block copolymer melt by means of dynamic density f...
The double gyroid network morphology has been the focus of extensive research efforts as one of the ...
Various complex self-assembled morphologies of lamellar- and cylinder-forming block copolymers compr...
The influence of confinement on morphology formation in copolymer systems is an important area of in...