Search results for "Monte Carlo method."

showing 10 items of 1217 documents

Structure of bottle brush polymers on surfaces: weak versus strong adsorption.

2011

Large-scale Monte Carlo simulations are presented for a coarse-grained model of cylindrical molecular brushes adsorbed on a flat structureless substrate, varying both the chain length N of the side chains and the backbone chain length N(b). For the case of good solvent conditions, both the cases of weak adsorption (only 10 to 15% of the monomers being bound to the surface) and strong adsorption (~40% of the monomers being bound to the surface, forcing the bottle brush into an almost 2D conformation) are studied. We focus on the scaling of the total linear dimensions of the cylindrical brush with both chain lengths N and N(b), demonstrating a crossover from rod-like behavior (for not very la…

chemistry.chemical_classificationPersistence lengthQuantitative Biology::BiomoleculesChemistryMonte Carlo methodBrushBackbone chainPolymerSurfaces Coatings and Filmslaw.inventionCondensed Matter::Soft Condensed Matterchemistry.chemical_compoundAdsorptionChemical physicslawPolymer chemistryMaterials ChemistrySide chainPhysical and Theoretical ChemistryScalingThe journal of physical chemistry. B
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Phase Separation of Colloid Polymer Mixtures Under Confinement

2013

Colloid polymer mixtures exhibit vapor-liquid like and liquid-solid like phase transitions in bulk suspensions, and are well-suited model systems to explore confinement effects on these phase transitions. Static aspects of these phenomena are studied by large-scale Monte Carlo simulations, including novel “ensemble switch” methods to estimate excess free energies due to confining walls. The kinetics of phase separation is investigated by a Molecular Dynamics method, where hydrodynamic effects due to the solvent are included via the multiparticle collision dynamics method.

chemistry.chemical_classificationPhase transitionComputer scienceMonte Carlo methodKineticsPolymerCondensed Matter::Soft Condensed MatterSolventContact angleColloidMolecular dynamicschemistryChemical physicsPhase (matter)Thermodynamic limit
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Coil-bridge transition in a single polymer chain as an unconventional phase transition: theory and simulation.

2014

The coil-bridge transition in a self-avoiding lattice chain with one end fixed at height H above the attractive planar surface is investigated by theory and Monte Carlo simulation. We focus on the details of the first-order phase transition between the coil state at large height H ⩾ Htr and a bridge state at H ⩽ Htr, where Htr corresponds to the coil-bridge transition point. The equilibrium properties of the chain were calculated using the Monte Carlo pruned-enriched Rosenbluth method in the moderate adsorption regime at (H/Na)tr ⩽ 0.27 where N is the number of monomer units of linear size a. An analytical theory of the coil-bridge transition for lattice chains with excluded volume interact…

chemistry.chemical_classificationPhase transitionCondensed matter physicsChemistryPolymersMonte Carlo methodGeneral Physics and AstronomyThermodynamicsPolymerPhase TransitionMicrocanonical ensemblePlanarTransition pointEnergy TransferLattice (order)Excluded volumeThermodynamicsAdsorptionPhysical and Theoretical ChemistryMonte Carlo MethodThe Journal of chemical physics
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Orientational ordering transitions of semiflexible polymers in thin films: A Monte Carlo simulation

2011

Athermal solutions (from dilute to concentrated) of semiflexible macromolecules confined in a film of thickness D between two hard walls are studied by means of grand-canonical lattice Monte Carlo simulation using the bond fluctuation model. This system exhibits two phase transitions as a function of the thickness of the film and polymer volume fraction. One of them is the bulk isotropic-nematic first-order transition, which ends in a critical point on decreasing the film thickness. The chemical potential at this transition decreases with decreasing film thickness ("capillary nematization"). The other transition is a continuous (or very weakly first-order) transition in the layers adjacent …

chemistry.chemical_classificationPhase transitionMaterials scienceCondensed matter physicsCapillary actionMonte Carlo method02 engineering and technologyPolymer021001 nanoscience & nanotechnology01 natural sciencesCondensed Matter::Soft Condensed MatterchemistryLiquid crystalCritical point (thermodynamics)0103 physical sciencesVolume fractionThin film010306 general physics0210 nano-technologyPhysical Review E
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1995

Surfaces have a profound effect on the structure and related properties of multiphase polymeric materials, such as polymer mixtures and block copolymer mesophases. In particular, phase transitions in the bulk (unmixing, microphase separation, etc.) may be complemented by surface-induced transitions (formation of wetting layers, surface-directed spinodal decomposition, surface-induced ordering). This review gives a brief introduction to the phenomenological theories of such phenomena, emphasizing the simplest approach based on Flory—Huggins—de Gennes free energy functionals and associated Monte Carlo simulations. More sophisticated theories and recent experiments are mentioned briefly.

chemistry.chemical_classificationPhase transitionPolymers and PlasticsSpinodal decompositionGeneral Chemical EngineeringMonte Carlo methodMineralogyThermodynamicsPolymerCondensed Matter::Soft Condensed MatterchemistryMean field theoryPhenomenological modelWettingPolymer blendActa Polymerica
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One- and two-component bottle-brush polymers: simulations compared to theoretical predictions

2007

Scaling predictions and results from self-consistent field calculations for bottle-brush polymers with a rigid backbone and flexible side chains under good solvent conditions are summarized and their validity and applicability is assessed by a comparison with Monte Carlo simulations of a simple lattice model. It is shown that under typical conditions, as they are also present in experiments, only a rather weak stretching of the side chains is realized, and then the scaling predictions based on the extension of the Daoud-Cotton blob picture are not applicable. Also two-component bottle brush polymers are considered, where two types (A,B) of side chains are grafted, assuming that monomers of …

chemistry.chemical_classificationPhase transitionQuantitative Biology::BiomoleculesPolymers and PlasticsChemistryOrganic ChemistryMonte Carlo methodFOS: Physical sciencesThermodynamicsPolymerCondensed Matter - Soft Condensed MatterCondensed Matter PhysicsPolymer brushInorganic ChemistryCondensed Matter::Soft Condensed MatterMaterials ChemistrySide chainRadius of gyrationSoft Condensed Matter (cond-mat.soft)Statistical physicsScalingLattice model (physics)
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The intermediate coherent scattering function of entangled polymer melts: a Monte Carlo test of des Cloizeaux' theory

1994

Using the bond fluctuation model for flexible polymer chains in a dense melt the intermediate coherent scattering function for chains containing N=200 monomers is calculated and interpreted in terms of a recent theory of des Cloizeaux. The theory yields an explicit description for the crossover from the Rouse model to the regime where reptation prevails, for the limit N→∞. While the Monte Carlo data are qualitatively compatible with this description, an accurate estimation of the tube diameter is prevented due to the onset of a diffusive decay of the scattering function, not included in the theory. For a full quantitative analysis of the Monte Carlo data (as well as of experiments on chains…

chemistry.chemical_classificationPhysics and Astronomy (miscellaneous)ScatteringMonte Carlo methodCrossoverGeneral EngineeringPolymerFunction (mathematics)Atomic and Molecular Physics and OpticsCondensed Matter::Soft Condensed MatterMonte carlo testReptationchemistryStatistical physicsLimit (mathematics)Journal de Physique II
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Third virial coefficient for 4-arm and 6-arm star polymers

2008

We discuss the computation of the third virial coefficient in polymer systems, focusing on an additional contribution absent in the case of monoatomic fluids. We determine the interpenetration ratio and several quantities that involve the third virial coefficient for star polymers with 4 and 6 arms in the good-solvent regime, in the limit of a large degree of polymerization.

chemistry.chemical_classificationPhysicsMonatomic gasStatistical Mechanics (cond-mat.stat-mech)Polymers and PlasticsOrganic ChemistryMonte Carlo methodFOS: Physical sciencesThermodynamicsPolymerStatistical mechanicsDegree of polymerizationCondensed Matter - Soft Condensed MatterCondensed Matter Physicsmonte carlo simulations; star polymers; statistical mechanics; statistical thermodynamics; virial expansionInorganic ChemistrychemistryVirial coefficientMaterials ChemistryVirial expansionSoft Condensed Matter (cond-mat.soft)Limit (mathematics)Condensed Matter - Statistical Mechanics
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Phase transitions in a single polymer chain: A micro-canonical analysis of Wang–Landau simulations

2008

Abstract We present simulation results for the phase behavior of a single chain for a flexible lattice polymer model using the Wang–Landau sampling idea. Using the micro-canonical density of states obtained with this method we will discuss the ability of an analysis in the micro-canonical ensemble to locate the coil-globule (continuous) and liquid–solid (first-order) transitions found for this problem using a canonical analysis.

chemistry.chemical_classificationPhysicsPhase transitionMonte Carlo methodGeneral Physics and AstronomyPolymerSingle chainCanonical analysischemistryHardware and ArchitectureLattice (order)Density of statesStatistical physicsPhase diagramComputer Physics Communications
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A Monte Carlo Study of Living Polymers in 2D: Effect of Small Chains on Static Properties

1996

A slithering snake algorithm is combined with a binding and breaking chain algorithm to simulate the static behavior of living polymers according to Cates' description. It is shown that this simple two-dimensional simulation on a square lattice gives good agreement with the mean field theory. However, the large amount of small contour length chains for small values of the mean average length 〈L 〉 appears to be one of the reasons for the discrepancies observed between the simulated results and the mean field theory. This finding could explain disagreements between experimental observation and theory. Also, the results are not in favor of a swelling of the greater chains by the smaller one.

chemistry.chemical_classificationPhysicsPhysics and Astronomy (miscellaneous)Monte Carlo methodGeneral EngineeringPolymerSquare latticeAtomic and Molecular Physics and OpticschemistryChain (algebraic topology)Mean field theoryContour lengthStatistical physicsStatic behaviorArithmetic meanJournal de Physique II
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