Predicting the Mesophases of Copolymer-Nanoparticle Composites
Top Cited Papers
- 29 June 2001
- journal article
- other
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 292 (5526) , 2469-2472
- https://doi.org/10.1126/science.1060585
Abstract
The interactions between mesophase-forming copolymers and nanoscopic particles can lead to highly organized hybrid materials. The morphology of such composites depends not only on the characteristics of the copolymers, but also on the features of the nanoparticles. To explore this vast parameter space and predict the mesophases of the hybrids, we have developed a mean field theory for mixtures of soft, flexible chains and hard spheres. Applied to diblock-nanoparticle mixtures, the theory predicts ordered phases where particles and diblocks self-assemble into spatially periodic structures. The method can be applied to other copolymer-particle mixtures and can be used to design novel composite architectures.Keywords
This publication has 13 references indexed in Scilit:
- Discovering New Ordered Phases of Block CopolymersPhysical Review Letters, 2000
- Combinatorial Screening of Complex Block Copolymer Assembly with Self-Consistent Field TheoryPhysical Review Letters, 1999
- Triblock Copolymer Syntheses of Mesoporous Silica with Periodic 50 to 300 Angstrom PoresScience, 1998
- Organically Modified Aluminosilicate Mesostructures from Block Copolymer PhasesScience, 1997
- Effect of nanoparticle size on the internal structure of copolymer-nanoparticles composite thin films studied by neutron reflectionPhysica B: Condensed Matter, 1997
- Molecular Manipulation of Microstructures: Biomaterials, Ceramics, and SemiconductorsScience, 1997
- Unifying Weak- and Strong-Segregation Block Copolymer TheoriesMacromolecules, 1996
- Phase transitions in lyotropic colloidal and polymer liquid crystalsReports on Progress in Physics, 1992
- A density functional theory of meltingMolecular Physics, 1984
- Equation of State for Nonattracting Rigid SpheresThe Journal of Chemical Physics, 1969