Self-assembled morphologies of a diblock copolymer melt confined in a cylindrical nanopore
W Li, RA Wickham - Macromolecules, 2006 - ACS Publications
We systematically investigate the microdomain morphologies that self-assemble in a diblock
copolymer melt confined to a narrow cylindrical nanopore using real-space self-consistent …
copolymer melt confined to a narrow cylindrical nanopore using real-space self-consistent …
Influence of the surface field on the self-assembly of a diblock copolymer melt confined in a cylindrical nanopore
W Li, RA Wickham - Macromolecules, 2009 - ACS Publications
We study the influence of the surface field on lamellar morphologies that form in a diblock
copolymer melt confined in a cylindrical nanopore, using self-consistent mean-field theory …
copolymer melt confined in a cylindrical nanopore, using self-consistent mean-field theory …
Phase diagram for a diblock copolymer melt under cylindrical confinement
W Li, RA Wickham, RA Garbary - Macromolecules, 2006 - ACS Publications
We extensively study the phase diagram of a diblock copolymer melt confined in a
cylindrical nanopore using real-space self-consistent mean-field theory. We discover a rich …
cylindrical nanopore using real-space self-consistent mean-field theory. We discover a rich …
Self-assembly of symmetric diblock copolymers confined in spherical nanopores
B Yu, B Li, Q Jin, D Ding, AC Shi - Macromolecules, 2007 - ACS Publications
Self-assembly of symmetric diblock copolymers confined in spherical nanopores is studied
using simulated annealing Monte Carlo simulations. The dependence of the self-assembled …
using simulated annealing Monte Carlo simulations. The dependence of the self-assembled …
Confinement-induced novel morphologies of block copolymers
B Yu, P Sun, T Chen, Q Jin, D Ding, B Li, AC Shi - Physical review letters, 2006 - APS
Self-assembly of block copolymers confined in cylindrical nanopores is studied
systematically using a simulated annealing technique. For diblock copolymers which form …
systematically using a simulated annealing technique. For diblock copolymers which form …
Confinement-induced morphologies of cylinder-forming asymmetric diblock copolymers
B Yu, Q Jin, D Ding, B Li, AC Shi - Macromolecules, 2008 - ACS Publications
Self-assembly of cylinder-forming diblock copolymers confined in cylindrical nanopores is
studied systematically using a simulated annealing method. The diblock copolymers form …
studied systematically using a simulated annealing method. The diblock copolymers form …
Origin of microstructures from confined asymmetric diblock copolymers
The self-assembly of asymmetric diblock copolymers confined within cylindrical pores is
studied using the self-consistent-field theory. The cylinder-forming asymmetric diblock …
studied using the self-consistent-field theory. The cylinder-forming asymmetric diblock …
Self-assembly of diblock copolymers confined in cylindrical nanopores
B Yu, P Sun, T Chen, Q Jin, D Ding, B Li… - The Journal of chemical …, 2007 - pubs.aip.org
Self-assembly of AB diblock copolymers confined in cylindrical nanopores is studied using a
simulated annealing technique. The pore diameter and surface preference are …
simulated annealing technique. The pore diameter and surface preference are …
Universality and specificity in the self-assembly of cylinder-forming block copolymers under cylindrical confinement
J Yang, Q Dong, M Liu, W Li - Macromolecules, 2022 - ACS Publications
Both experimental and theoretical studies have shown that a cylinder-forming block
copolymer melt under the confinement of a nanopore can self-assemble into an interesting …
copolymer melt under the confinement of a nanopore can self-assemble into an interesting …
Symmetric diblock copolymers in nanopores: Monte Carlo simulations and strong-stretching theory
Q Wang - The Journal of chemical physics, 2007 - pubs.aip.org
We have performed lattice Monte Carlo simulations to study the self-assembled morphology
of symmetric diblock copolymers in nanopores. The pore diameter and surface preference …
of symmetric diblock copolymers in nanopores. The pore diameter and surface preference …
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