Search results for "Radius"

showing 10 items of 708 documents

Mean square radius of gyration and hydrodynamic radius of jointed star (dumbbell) and H-comb polymers

1996

Equations for the mean square radius of gyration and the hydrodynamic radius for jointed stars (dumbbells) and H-combs are derived, based on random flight statistics for each subchain. Comparision with literature data on computer simulations and experimental data for H-combs show good agreement for the g-value of the mean square radius of gyration even in good solvents. This suggests that for the mean square radius of gyration the relative dimension of a H-comb relative to the linear molecule of the same degree of polymerization is not altered significantly by long range interactions, as in the case of star polymers. For the hydrodynamic radius the situation is different. Fair agreement is …

chemistry.chemical_classificationQuantitative Biology::BiomoleculesHydrodynamic radiusPolymers and Plasticsbusiness.industryChemistryOrganic ChemistryLinear molecular geometryPolymerDegree of polymerizationCondensed Matter PhysicsRelative dimensionMolecular physicsCondensed Matter::Soft Condensed MatterInorganic ChemistryViscosityOpticsMaterials ChemistryRadius of gyrationDumbbellbusinessMacromolecular Theory and Simulations
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Structural properties of concave cylindrical brushes interacting with free chains

2011

We present a self-consistent field theoretical study of the microstructure of concave cylindrical brushes as a function of the cylinder radius, grafting density, grafted chain length, and the solvent quality. We show that the results for the radial monomer density profile and the distribution of the free ends are in good agreement with the corresponding molecular dynamics results. Part of the investigation is focused on the conformational behavior of a free macromolecule in a cylindrical brush. A central result is the observed non-monotonous variation of the size of a free chain in a brush-coated tube when the tube radius is systematically changed. An interpretation of this behavior which d…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesMaterials scienceField (physics)General ChemistryRadiusPolymerCondensed Matter PhysicsMicrostructureMolecular physicsCondensed Matter::Soft Condensed Matterchemistry.chemical_compoundMolecular dynamicsMonomerchemistryPolymer chemistryCylinderTube (container)Soft Matter
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Monte Carlo simulation studies of the interfaces between polymeric and other solids as models for fiber-matrix interactions in advanced composite mat…

1996

As a coarse-grained model for dense amorphous polymer systems interacting with solid walls (i.e., the fiber surface in a composite), the bond fluctuation model of flexible polymer chains confined between two repulsive surfaces is studied by extensive Monte Carlo simulations. Choosing a potential for the length of an effective bond that favors rather long bonds, the full temperature region from ordinary polymer melts down to the glass transition is accessible. It is shown that in the supercooled state near the glass transition an “interphase” forms near the walls, where the structure of the melt is influenced by the surface. This “interphase” already shows up in static properties, but also h…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesMaterials sciencePolymers and PlasticsOrganic ChemistryMonte Carlo methodMineralogyPolymerCondensed Matter PhysicsGyrationAmorphous solidCondensed Matter::Soft Condensed MatterInorganic ChemistrychemistryChemical physicsMaterials ChemistryRadius of gyrationSupercoolingGlass transitionConfined spaceMacromolecular Theory and Simulations
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Interaction Between Polymer Brush-Coated Spherical Nanoparticles: Effect of Solvent Quality

2012

The interaction between two spherical polymer brushes in solvents of variable quality is studied by molecular dynamics simulation and by self-consistent field theory, varying both the radius of the spherical particles and their distance, as well as the grafting density and the chain length of the end-grafted flexible polymer chains. Both the potential of mean force between the particles as a function of their distance is computed, for various choices of the parameters mentioned above, and the structural characteristics are discussed (density profiles, average end-to-end distance of grafted chains, etc.) It is found that for rather short chain lengths and not too large grafting densities, is…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesMaterials sciencePolymers and PlasticsOrganic ChemistryNanoparticleRadiusPolymerGraftingPolymer brushCondensed Matter::Soft Condensed MatterInorganic ChemistrySolventMolecular dynamicschemistryChemical physicsPolymer chemistryMaterials ChemistryPotential of mean forceMacromolecules
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Effect of the solvent quality on the structural rearrangement of spherical brushes: coarse-grained models

2012

A coarse-grained model for flexible polymers end-grafted to repulsive spherical nanoparticles is studied for various polymer lengths, grafting densities, and nanoparticle sizes by molecular dynamics simulations, considering variable solvent quality in the framework of an implicit solvent treatment. Below the theta point, the tuning of the temperature strongly influences the coverage of the nanoparticle surface by collapsed single chains or clusters of several chains. The shape and size of the aggregates depend on the number of monomers and surface density of the polymers. Specifically we analyzed the effect of the solvent quality on the density profiles and radius of gyration of the single …

chemistry.chemical_classificationQuantitative Biology::BiomoleculesMaterials scienceTheta solventNanoparticleGeneral ChemistryPolymerCondensed Matter PhysicsCondensed Matter::Soft Condensed MatterMolecular dynamicschemistry.chemical_compoundMonomerchemistryChemical physicsPolymer chemistryRadius of gyrationCluster (physics)MoleculeSoft Matter
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Monte-Carlo Simulation of 3-Dimensional Glassy Polymer Melts: Reptation Versus Single Monomer Dynamics

1995

A polymer melt is simulated at finite temperature by the Monte-Carlo method. We use a coarse-grained model for the polymer system, the bond-fluctuation model. Static properties of the melt can be obtained by generating configurations not with single-monomer- dynamics which moves individual monomers locally, but reptation-dynamics which allows collec- tive motion of the chains. This algorithm can produce equilibrated configurations much faster. It is demonstrated that static properties do not differ from those obtained by single-monomer- dynamics. Values of the radius of gyration, the mean square bond length and similar quantities for different temperatures and densities are presented.

chemistry.chemical_classificationQuantitative Biology::BiomoleculesPhysics and Astronomy (miscellaneous)Dynamics (mechanics)Monte Carlo methodGeneral EngineeringThermodynamicsPolymerAtomic and Molecular Physics and OpticsCondensed Matter::Soft Condensed MatterBond lengthchemistry.chemical_compoundReptationMonomerchemistryRadius of gyrationStatistical physicsPolymer meltJournal de Physique II
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Conformational Properties of Polymer Mushrooms Under Spherical and Cylindrical Confinement

2010

A coarse grained model of a flexible macromolecule end-grafted on the inside of a sphere or a cylinder under good solvent conditions is studied by Monte Carlo simulations. For cylindrical confinement, two regimes are found: when the cylinder radius R exceeds the gyration radius R 90 of the polymer mushroom grafted to a planar surface, a simple scaling description holds. In the opposite case, a non-monotonic crossover to a cigar-like quasi-one-dimensional structure occurs, and the distribution P e (x) of the free chain end in the x-direction along the cylinder axis becomes bimodal. Spherical confinement, on the other hand, causes a crossover from dilute to semidilute behavior of the structur…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesPolymers and PlasticsChemistryOrganic ChemistryMonte Carlo methodPolymerRadiusCondensed Matter PhysicsMolecular physicsGyrationCondensed Matter::Soft Condensed MatterInorganic ChemistryPlanarMaterials ChemistryRadius of gyrationCylinderStatistical physicsScalingMacromolecular Theory and Simulations
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Comb-Branched Polymers:  Monte Carlo Simulation and Scaling

1996

The Monte Carlo simulation technique (the bond fluctuation model) has been used for the study of the equilibrium conformations of comb-branched polymers consisting of a long flexible main chain and side chains grafted at a regular separation onto the main chain. The solvent has been supposed to be good (athermal) for the main and side chains. The global conformation and the gyration radius of the polymer, as well as the local conformational structure of the comb, have been analyzed as functions of the length of the side chains and spacers. The effect of induced rigidity of the comb due to the interaction between side chains has been observed. We have found the results of the simulation to b…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesPolymers and PlasticsOrganic ChemistryMonte Carlo methodPhysics::OpticsPolymerGyrationCondensed Matter::Soft Condensed MatterInorganic ChemistryRigidity (electromagnetism)chemistryChemical physicsMaterials ChemistrySide chainRadius of gyrationStatistical physicsScalingBond fluctuation modelMacromolecules
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Frictional Drag Mechanisms between Polymer-Bearing Surfaces

2001

The fundamental features of friction between two polymer-bearing surfaces in relative sliding motion are investigated by molecular dynamics simulation. Adsorbed and grafted polymers are considered in good and bad solutions. The solvent is not treated explicitly but indirectly in terms of a Langevin thermostat. In both systems, we observe shear thinning that is attributed to an orientation of the radius of gyration along the sliding direction. This effect is particularly strong for surfaces bearing polymer brushes. In this case, the shear stresses are mainly determined by the degree of the interpenetration of brushes.

chemistry.chemical_classificationQuantitative Biology::BiomoleculesShear thinningMaterials scienceSurfaces and InterfacesPolymerCondensed Matter PhysicsThermostatlaw.inventionCondensed Matter::Soft Condensed MatterMolecular dynamicsClassical mechanicsShear (geology)chemistryDraglawElectrochemistryRadius of gyrationGeneral Materials ScienceComposite materialSpectroscopyLangmuir
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Interfacial properties of glassy polymer melts: A Monte Carlo study

1996

The properties of the interface between a polymer melt and a solid wall are studied over a wide range of temperatures by dynamic Monte Carlo simulations. It is shown that in the supercooled state near the glass transition of the melt an “interphase” forms, the structure of which is influenced by the wall. The thickness of this interphase is determined from the monomer density profile near the surface and is strongly temperature dependent. At low glass-like temperatures it is larger than the bulk radius of gyration of the chains.

chemistry.chemical_classificationRange (particle radiation)Materials sciencePolymers and PlasticsOrganic ChemistryMonte Carlo methodThermodynamicsPolymerCondensed Matter PhysicsCondensed Matter::Disordered Systems and Neural NetworksCondensed Matter::Soft Condensed MatterCrystallographychemistry.chemical_compoundMonomerchemistryMaterials ChemistryRadius of gyrationInterphaseSupercoolingGlass transitionMacromolecular Symposia
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