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Intraglobular structures in multiblock copolymer chains from a Monte Carlo simulation
- Source :
- Physical review. E, Statistical, nonlinear, and soft matter physics. 84(1 Pt 1)
- Publication Year :
- 2011
-
Abstract
- Multiblock copolymer chains in implicit nonselective solvents are studied by using a Monte Carlo method, which employs a parallel tempering algorithm. Chains consisting of $120 A$ and $120 B$ monomers, arranged in three distinct microarchitectures: $(10\ensuremath{-}10){}_{12}, (6\ensuremath{-}6){}_{20}$, and $(3\ensuremath{-}3){}_{40}$, collapse to globular states upon cooling, as expected. By varying both the reduced temperature ${T}^{*}$ and the compatibility between monomers $\ensuremath{\omega}$, numerous intraglobular structures are obtained: diclusters (handshake, spiral, torus with a core, etc.), triclusters, and $n$ clusters with $ng3$ (lamellar and other), which are reminiscent of the block copolymer nanophases for spherically confined geometries. Phase diagrams for various chains in the (${T}^{*},\ensuremath{\omega}$) space are mapped. The structure factor $S(k)$, for a selected microarchitecture and $\ensuremath{\omega}$, is calculated. Since $S(k)$ can be measured in scattering experiments, it can be used to relate simulation results to an experiment. Self-assembly in those systems is interpreted in terms of competition between minimization of the interfacial area separating different types of monomers and minimization of contacts between chain and solvent. Finally, the relevance of this model to the protein folding is addressed.
- Subjects :
- FOS: Computer and information sciences
Models, Molecular
Protein Folding
Polymers
Monte Carlo method
Biophysics
Molecular Conformation
FOS: Physical sciences
Condensed Matter - Soft Condensed Matter
Omega
Molecular physics
Computational Engineering, Finance, and Science (cs.CE)
Nanotechnology
Lamellar structure
Computer Simulation
Computer Science - Computational Engineering, Finance, and Science
Phase diagram
Physics
Quantitative Biology::Biomolecules
Scattering
Temperature
Torus
Nanostructures
Condensed Matter::Soft Condensed Matter
Solvents
Soft Condensed Matter (cond-mat.soft)
Parallel tempering
Structure factor
Monte Carlo Method
Algorithms
Subjects
Details
- ISSN :
- 15502376
- Volume :
- 84
- Issue :
- 1 Pt 1
- Database :
- OpenAIRE
- Journal :
- Physical review. E, Statistical, nonlinear, and soft matter physics
- Accession number :
- edsair.doi.dedup.....1f678c3a58476f4204ba2b94eda43cc4