Search results for "Monte Carlo method."

showing 10 items of 1217 documents

Structure and dynamics of thin polymer films: a case study with the bond-fluctuation model

2002

Abstract This paper reports Monte Carlo simulation results of a polymer melt of short, non-entangled chains which are embedded between two impenetrable walls. The melt is simulated by the bond-fluctuation lattice model under athermal conditions, i.e. only excluded volume interactions between the monomers and between the monomers and the walls are taken into account. In the simulations, the wall separation is varied from about one to about 15 times the bulk radius of gyration R g . The confinement influences both static and dynamic properties of the films: Chains close to the walls preferentially orient parallel to it. This parallel orientation decays with increasing distances from the wall …

chemistry.chemical_classificationPreferential alignmentLattice model (finance)Polymers and PlasticsCondensed matter physicsChemistryOrganic ChemistryMonte Carlo methodPolymerCondensed Matter::Soft Condensed MatterOrientation (geometry)Excluded volumeMaterials ChemistryRadius of gyrationStatistical physicsThin filmPolymer
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Anomalous diffusion in polymer melts

2002

Abstract We present a study of the anomalous diffusion regimes in polymer melt dynamics performing a Monte Carlo (MC) simulation of the bond-fluctuation lattice model. Special emphasis is laid on the crossover from a Rouse-like motion to the behavior predicted by reptation theory. For the longest chains of N=400 the high statistical accuracy of the data allows for clear identification of the subdiffusive regimes in the center of mass motion and the monomer displacement. They are well compatible with those predicted by reptation theory. Furthermore a detailed analysis of the different short time anomalous diffusion regimes in the melt dynamics of polymer chains is presented and it is shown t…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesAnomalous diffusionMonte Carlo methodCrossoverGeneral Physics and AstronomyThermodynamicsPolymerDisplacement (vector)Condensed Matter::Soft Condensed MatterReptationchemistryStatistical physicsCenter of massPhysical and Theoretical ChemistryLattice model (physics)Chemical Physics
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Interfaces in immiscible polymer blends: A Monte Carlo simulation approach on the CRAY T3E

1999

Polymeric materials pose a challenge for Monte Carlo simulations because of the widely spread length and time scales involved. Using large scale computer simulations we investigate the interfacial structure in a partially compatible polymer mixture. The problem is studied in the framework of a coarse grained lattice model - the bond fluctuation model on the simple cubic lattice, choosing N = 32 and lattice linear dimensions L × L × D up to 512 × 512 × 64. We employ a two dimensional geometric decomposition scheme to implement this algorithm on the CRAY T3E. The algorithm scales very well with the number of processors. The structure of polymer coils near interfaces between coexisting phases …

chemistry.chemical_classificationQuantitative Biology::BiomoleculesCapillary waveComputer scienceMonte Carlo methodPolymerComputational scienceCondensed Matter::Soft Condensed Matterchemistry.chemical_compoundMonomerDistribution functionchemistryChemical physicsLattice (order)CopolymerPolymer blend
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Structure and dynamics of grafted polymer layers: A Monte Carlo simulation

1991

The bond fluctuation model of polymer chains on lattices is used to study layers of polymers anchored with one end at a hard wall, assuming good solvent conditions and repulsive interactions between the monomers and the wall. Chain lengths from N=10 to N=80 and grafting densities σ from 0.025 to 0.20 are considered, both for the ‘‘quenched’’ case, where the anchor points are kept fixed at randomly chosen surface sites, and the ‘‘annealed’’ case, where lateral diffusion of the anchored ends at the wall is considered. Profiles of monomer density and free end density, chain linear dimensions parallel and perpendicular to the wall, as well as corresponding mean square displacements of inner and…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesChemistryMonte Carlo methodRelaxation (NMR)General Physics and AstronomyPolymerMolecular physicsCondensed Matter::Soft Condensed Matterchemistry.chemical_compoundMonomerChain (algebraic topology)Chemical bondPerpendicularStatistical physicsPhysical and Theoretical ChemistryScalingThe Journal of Chemical Physics
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Monte Carlo simulations of chain dynamics in polymer brushes

1994

The bond-fluctuation model of polymer chains has been used to study layers of end-grafted polymers anchoring at repulsive walls for a broad range of chain length, grafting densities and solvent quality. The dynamics of monomers and associated relaxation times are investigated and interpreted by phenomenological theories and scaling arguments. The case is also considered where a chain is cut off from its anchor point and the chain is subsequently expelled from the brush. Both the velocity with which the chain leaves the brush and the associated conformational changes (chain contraction etc.) are analysed and interpreted in terms of recent theoretical concepts.

chemistry.chemical_classificationQuantitative Biology::BiomoleculesChemistryRelaxation (NMR)Monte Carlo methodAnchoringPolymerCondensed Matter::Soft Condensed MatterMolecular dynamicsChain (algebraic topology)Chemical physicsStatistical physicsPhysical and Theoretical ChemistryScalingWorm-like chainFaraday Discussions
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Anomalous Structure and Scaling of Ring Polymer Brushes

2011

A comparative simulation study of polymer brushes formed by grafting at a planar surface either flexible linear polymers (chain length $N_L$) or (non-catenated) ring polymers (chain length $N_R=2 N_L$) is presented. Two distinct off-lattice models are studied, one by Monte Carlo methods, the other by Molecular Dynamics, using a fast implementation on graphics processing units (GPUs). It is shown that the monomer density profiles $\rho(z)$ in the $z$-direction perpendicular to the surface for rings and linear chains are practically identical, $\rho_R(2 N_L, z)=\rho_L(N_L, z)$. The same applies to the pressure, exerted on a piston at hight z, as well. While the gyration radii components of ri…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesCondensed Matter - Materials ScienceMaterials scienceStatistical Mechanics (cond-mat.stat-mech)Monte Carlo methodGeneral Physics and AstronomyMaterials Science (cond-mat.mtrl-sci)FOS: Physical sciencesPolymerCondensed Matter - Soft Condensed MatterRing (chemistry)GyrationMolecular physicsCondensed Matter::Soft Condensed MatterMolecular dynamicsPlanarchemistryPerpendicularSoft Condensed Matter (cond-mat.soft)ScalingCondensed Matter - Statistical Mechanics
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Selfdiffusion of polymer chains in solutions and melts

2005

Anomalous diffusion of monomers of polymer chains, as well as motion of these chains as a whole, is discussed with an emphasis on Monte Carlo simulations and simple scaling concepts. While the behavior of isolated chains in good solvents or Theta-solvents without excluded volume interactions is fully accounted for by the Rouse model, the behavior is less clear both for isolated chains in bad solvents and for chains in dense melts. Collapsed chains are shown to diffuse as g3(t) = <([rCM (t) -rCM(0)]2〉 ∝ tξ3 where the (effective?) exponent ξ3 simply seems to be linearly temperature-dependent for temperatures T lower than the Σ-temperature, ξ3 T/Θ. A relaxation time τ oc N3 is found, and scali…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesMaterials scienceAnomalous diffusionMonte Carlo methodThermodynamicsPolymerPolymer brushCondensed Matter::Soft Condensed Matterchemistry.chemical_compoundMonomerchemistryExcluded volumeExponentPhysical chemistryScaling
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Anomalous Diffusion and Relaxation of Collapsed Polymer Chains

1994

Time-dependent displacement of monomers and the centre-of-gravity motion of a polymer chain at various temperatures below the theta-temperature are studied by Monte Carlo simulation of an off-lattice model. While inner monomers diffuse Rouse-like, [ri(t) − ri(0)]2  t1/2, the centre of mass exhibits pronounced anomalous diffusion, [rc.m.(t) − rc.m.(0)]2  ta, where the exponent a seems to depend on temperature. The resulting anomalous dependence of the relaxation times on chain length is discussed in terms of scaling ideas. A possible relation to a glasslike freezing in of the collapsed globules is pointed out.

chemistry.chemical_classificationQuantitative Biology::BiomoleculesMaterials scienceCondensed matter physicsAnomalous diffusionMonte Carlo methodGeneral Physics and AstronomyPolymerCondensed Matter::Soft Condensed Matterchemistry.chemical_compoundMonomerchemistryExponentRelaxation (physics)Anomaly (physics)ScalingEurophysics Letters (EPL)
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Scaling concepts for polymer brushes and their test with computer simulation

2004

After a brief review of the scaling concepts for static and dynamic properties of polymer brushes in good solvents and Theta solvents, the Monte Carlo evidence is discussed. It is shown that under typical conditions the diameter of the last blob is of the order of 10-20% of the brush height, and therefore pronounced deviations from the self-consistent field predictions occur. In bad solvents, lateral microphase separation occurs leading to an irregular pattern of "dimples". Particularly interesting is the response of brushes to shear deformation, and the interaction between two interpenetrating brushes. Recent attempts to understand the resulting shear forces via molecular-dynamics simulati…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesMaterials scienceField (physics)Shear forceMonte Carlo methodBiophysicsBrushSurfaces and InterfacesGeneral ChemistryPolymerlaw.inventionCondensed Matter::Soft Condensed MatterchemistrylawDimpleGeneral Materials ScienceStatistical physicsSoft matterScalingBiotechnologyThe European Physical Journal E
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Monte carlo simulation of the glass transition of polymer melts

2007

The bond fluctuation model of polymer melts is presented as a reasonable compromise between simulation efficiency and realistic chemical detail. It is shown that inclusion of a potential energy that depends on the length of the effective bonds connecting the effective monomers easily creates a conflict between configurational entropy of dense packing and the energetic tendency of the bonds to stretch. This competition leads to a glass transition of the model, which very well describes many features of real systems.

chemistry.chemical_classificationQuantitative Biology::BiomoleculesMaterials scienceMonte Carlo methodConfiguration entropyThermodynamicsPolymerPotential energyCondensed Matter::Soft Condensed Matterchemistry.chemical_compoundMonomerchemistryGlass transitionSupercoolingBond fluctuation model
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