Search results for "Thermodynamics"

showing 10 items of 2774 documents

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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Biomolecular-solvent stereodynamic coupling probed by deuteration.

1983

Thermodynamic interpretation of experiments with isotopically perturbed solvent supports the view that solvent stereodynamics is directly relevant to thermodynamic stability of biomolecules. According with the current understanding of the structure of the aqueous solvent, in any stereodynamic configuration of the latter, connectivity pathways are identifiable for their topologic and order properties. Perturbing the solvent by isotopic substitution or, e.g., by addition of co-solvents, can therefore be viewed as reinforcing or otherwise perturbing these topologic structures. This microscopic model readily visualizes thermodynamic interpretation. In conclusion, the topologic stereodynamic str…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesPhysics::Biological PhysicsAqueous solutionBiomoleculeMolecular ConformationStereoisomerismGeneral MedicineDeuteriumCondensed Matter::Soft Condensed MatterSolventCoupling (physics)Order (biology)chemistryModels ChemicalStructural BiologyComputational chemistryPhase spaceSolventsMoleculeThermodynamicsChemical stabilityPhysics::Chemical PhysicsMolecular BiologyJournal of biomolecular structuredynamics
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Static and Dynamic Properties of Adsorbed Chains at Surfaces:  Monte Carlo Simulation of a Bead-Spring Model

1996

The adsorption of flexible polymers from dilute solution in good solvents at attractive walls is studied by Monte Carlo simulation of a coarse-grained off-lattice model, varying chain length N and ...

chemistry.chemical_classificationQuantitative Biology::BiomoleculesPolymers and PlasticsChemistryOrganic ChemistryMonte Carlo methodThermodynamicsPolymerSpring (mathematics)Condensed Matter::Soft Condensed MatterInorganic ChemistryBead (woodworking)Chain lengthAdsorptionMaterials ChemistryStatistical physicsPhysics::Chemical PhysicsMacromolecules
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Association Equilibria Theory for Polymers in Mixed Solvents with Specific Interactions

2004

Hydrogen bonding plays an important role in determining the physical and thermodynamic properties of polar fluids. Theoretical and experimental aspects of polymers, in mixed solvents with hydrogen-bonding-specific interactions, are investigated using a simple association model based on the theory of association equilibria developed by Pouchly et al. The thermodynamic non-idealities are accounted for using a modified Flory-Huggins theory with effective g ij parameters. The entropic term of the above formalism has been formulated taking into account the pplymer segment-solvent as well as the solvent-solvent hydrogen-bond formation. Four equilibrium constants are introduced to make a realistic…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesPolymers and PlasticsHydrogen bondChemistryOrganic ChemistrySolvationThermodynamicsSorptionPolymerCondensed Matter PhysicsCondensed Matter::Soft Condensed MatterInorganic ChemistryVirial coefficientMaterials ChemistryPhysical chemistryPhysics::Chemical PhysicsSolvent effectsTernary operationEquilibrium constantMacromolecular Theory and Simulations
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Polyelectrolytes Revisited: Reliable Determination of Intrinsic Viscosities

2007

The linear extrapolation of (hh0)/(h0c) towards c !0 constitutes the basis of traditional methods to determine intrinsic viscosities (h), where h is the viscosity of polymer solutions of concentration c and h0 is the viscosity of the pure solvent. With uncharged macromolecules this procedure works well; for polyelectrolytes it fails because of the pronounced non-linearity of the above dependence at high dilution resulting from the increasing electrostatic inter- actions. This contribution presents a new method for the determination of (h). It rests upon the application of the laws of phenomenological thermodynamics to the viscosity of polymer solutions and introduces a generalized intrinsic…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesPolymers and PlasticsIntrinsic viscosityRelative viscosityOrganic ChemistryInherent viscosityExtrapolationThermodynamicsPolymerPolyelectrolyteDilutionCondensed Matter::Soft Condensed MatterViscositychemistryMaterials ChemistryOrganic chemistryMacromolecular Rapid Communications
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Monte Carlo simulations of the polymer glass transition: From the test of theories to material modeling

1997

We present results on the glass transition in polymer melts using Monte Carlo simulations of the bond fluctuation lattice model. There are two questions we address in this work. What is the temperature dependence of the entropy density in such a model polymer melt and how well is it described by theories like the Gibbs-DiMarzio theory of the glass transition? And to what degree is one able to map the Hamiltonian of such an abstract lattice model onto a specific polymer material and use it to model the large scale and long time properties of a realistic polymer melt?

chemistry.chemical_classificationQuantitative Biology::BiomoleculesPolymers and PlasticsOrganic ChemistryMonte Carlo methodThermodynamicsPolymerCondensed Matter PhysicsCondensed Matter::Soft Condensed Mattersymbols.namesakeEntropy densitychemistryMaterials ChemistrysymbolsHamiltonian (quantum mechanics)Glass transitionPolymer meltMacromolecular Symposia
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A thermodynamic analysis on the coincidence of extrema conditions in the sorption equilibrium for ternary polymer systems

1993

Flory-Huggins theory of polymer solutions has been used to express the condition of extrema values in the total sorption, as well as the inversion point in the preferential adsorption parameters for termary polymer systems. Two approaches have been followed, the first considers the binary and ternary interaction parameters independent of polymer concentration and solvent composition. In the second one, this dependence has been introduced. Our attention is focused on the volume fraction of solvent mixture dependence of the above parameters, in order to confirm or not the coincidence between the extrema values and the inversion point. Several cosolvent and cononsolvent ternary polymer systems…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesTernary numeral systemPolymers and PlasticsChemistryThermodynamicsSorptionPolymerCoincidenceCondensed Matter::Soft Condensed MatterMaxima and minimaColloid and Surface ChemistryVolume fractionMaterials ChemistryPhysical and Theoretical ChemistrySolvent effectsTernary operationColloid & Polymer Science
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Prediction of maxima and minima in the curve of total sorption parameter in ternary polymer systems. Influence of ternary interaction parameter

1993

Flory-Huggins theory modified by Pouchly has been applied to predict maxima and minima in the curve of total sorption in ternary polymer systems formed by a polymer and two liquids. In this work, different diagrams based on experimental magnitudes easily obtained such as the difference in affinities of liquids, solvents and non solvents, and the solvent molar volume ratio. Total sorption parameter has been considered to be the decisive magnitude to define extrema conditions in both cosolvent and cononsolvent ternary polymer systems. The theoretical prediction is not altered by the inclusion of ternary interactions. Different examples of ternary systems dealing with vinyl polymers and polydi…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesTernary numeral systemPolymers and PlasticsThermodynamicsSorptionPolymerFlory–Huggins solution theoryVinyl polymerCondensed Matter::Soft Condensed MatterMaxima and minimaColloid and Surface ChemistryMolar volumechemistryMaterials ChemistryPhysical and Theoretical ChemistryTernary operationColloid & Polymer Science
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A comparative study between cosolvent and cononsolvent ternary polymer systems through the preferential adsorption coefficient

1993

Sorption equilibrium of polystyrene and poly (dimethyl siloxane) in mixed solvents has been monitored by means of the preferential adsorption coefficient experimentally determined from intensity light scattering measurements. The pairs of solvents used to dissolve each polymer sample have been selected for the purpose to perform cosolvent and cononsolvent ternary polymer systems. Flory-Huggins formalism including ternary interactions has been used to predict the sorption equilibrium for the cosolvent system and, for the first time, for cononsolvent ones. Moreover, the proportionality between binary and ternary interactions, recognized by Pouchly, is also corroborated for both ternary polyme…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesTernary numeral systemPolymers and PlasticsThermodynamicsSorptionPolymerGibbs free energyCondensed Matter::Soft Condensed MatterSolventchemistry.chemical_compoundsymbols.namesakeColloid and Surface ChemistrychemistryMaterials ChemistrysymbolsOrganic chemistryPolystyrenePhysics::Chemical PhysicsPhysical and Theoretical ChemistrySolvent effectsTernary operationColloid and Polymer Science
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Atomistic Molecular Dynamics Simulations of the Static and Dynamic Properties of a Polyethylene Melt

1999

I will discuss in this work the atomistic modelling of polymer melts using Molecular Dynamics (MD) simulations. After a general introduction into the problems one faces in the computer simulation of polymers in general and the atomistic simulations in particular, I will present some recent work on the atomistic modelling of an — C 100 H 202 melt,i.e. short chain polyethylene (PE). The aim of this work is to establish a quantitatively validated atomistic model which then can be used in two directions. One direction is the generation of input for the calibration of parameters in coarse-grained models, which in turn can be used to simulate the polymer under investigation over a much broader te…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesWork (thermodynamics)Molecular dynamicsMaterials sciencechemistryDynamic structure factorRelaxation (NMR)PolymerStatistical physicsStructure factorSpectral lineNeutron spin echo
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