Search results for "dynamics"

showing 10 items of 9782 documents

Influence of Molar Mass Distribution on the Compatibility of Polymers

1996

Abstract Phase equilibria were calculated by means of a new method (direct minimization of the Gibbs energy of mixing) for polymer blends consisting of monodisperse polymer A and polydisperse polymer B. The results obtained for a Schulz-Flory distribution of B (molecular nonuniformity U = (M w/M n) −1 = 1 and 100 components of model B) agree quantitatively with that of computations on the basis of continuous thermodynamics. The influence of U B on the miscibility of A and B in 1:1 mixtures was studied for constant M w of B, quantifying the incompatibility of the polymers by the length of the tie lines. The outcome of these calculations demonstrates that the typical effect of an augmentation…

chemistry.chemical_classificationPolymers and PlasticsDispersityThermodynamicsGeneral ChemistryPolymerMiscibilityGibbs free energysymbols.namesakechemistryMaterials ChemistryCeramics and CompositessymbolsMolar mass distributionBinary systemPolymer blendPhase diagramJournal of Macromolecular Science, Part A
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An Alternate Interpretation of Polymer/Solvent Jump Size Units for Free-Volume Diffusion Models

1996

Polystyrene/toluene mutual-diffusion coefficients have been measured as a function of temperature in the limit of infinite solvent dilution. The solvent to polymer jump size unit ratio (ξ) was determined from the Vrentas−Duda free-volume diffusion model for polymer self-diffusion and is in excellent agreement with values evaluated from solvent self- and binary mutual-diffusion coefficient data. Comparison of the free-volume model to a version of the Kirkwood−Riseman theory, modified for diffusion at infinite dilution under non-ϑ conditions, suggests that ξ follows the temperature dependence of the root-mean-squared end-to-end distance of the polystyrene and can be estimated without the use …

chemistry.chemical_classificationPolymers and PlasticsOrganic ChemistryThermodynamicsPolymerDilutionCondensed Matter::Soft Condensed MatterInorganic ChemistrySolventchemistry.chemical_compoundchemistryVolume (thermodynamics)Materials ChemistryBrownian dynamicsJumpPolystyrenePhysics::Chemical PhysicsDiffusion (business)Macromolecules
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Solid state NMR - A tool for studying molecular motion in polymers

1986

After an introduction describing the development of 1H, 2H, and 13C solid state NMR two sections on 13C and 2H NMR, respectively, outline the physical background as related with molecular motion. Some representative examples demonstrate the potential of recent NMR techniques in polymer dynamics studies.

chemistry.chemical_classificationPolymers and PlasticschemistrySolid-state nuclear magnetic resonanceComputational chemistryOrganic ChemistryDynamics (mechanics)Materials ChemistryMolecular motionPolymerCondensed Matter PhysicsMakromolekulare Chemie. Macromolecular Symposia
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Enzyme molecular mechanism as a starting point to design new inhibitors: a theoretical study of O-GlcNAcase.

2011

O-Glycoprotein 2-acetamino-2-deoxy-β-d-glucopyranosidase (O-GlcNAcase) hydrolyzes O-linked 2-acetamido-2-deoxy-β-d-glucopyranoside (O-GlcNAc) residues from post-translationally modified serine/threonine residues of nucleocytoplasmic protein. The chemical process involves substrate-assisted catalysis, where two aspartate residues have been identified as the two key catalytic residues of O-GlcNAcase. In this report, the first step of the catalytic mechanism used by O-GlcNAcase involving substrate-assisted catalysis has been studied using a hybrid quantum mechanical/molecular mechanical (QM/MM) Molecular Dynamics (MD) calculations. The free energy profile shows that the formation of the oxazol…

chemistry.chemical_classificationProtonStereochemistryClostridium perfringensOxazolineMolecular Dynamics Simulationbeta-N-AcetylhexosaminidasesSurfaces Coatings and FilmsCatalysisSubstrate SpecificitySerinechemistry.chemical_compoundHydrolysisMolecular dynamicsEnzymechemistryMaterials ChemistryQuantum TheoryThermodynamicsPhysical and Theoretical ChemistryThreonineEnzyme InhibitorsOxazolesThe journal of physical chemistry. B
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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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On the first-order collapse transition of a three-dimensional, flexible homopolymer chain model

2005

We present simulation results for the phase behavior of flexible lattice polymer chains using the Wang-Landau sampling idea. These chains display a two-stage collapse through a coil-globule transition followed by a crystallization at lower temperatures. Performing a finite-size scaling analysis on the two transitions, we show that they coincide in the thermodynamic limit corresponding to a direct collapse of the random coil into the crystal without intermediate coil-globule transition.

chemistry.chemical_classificationQuantitative Biology::BiomoleculesChain modelMaterials scienceGeneral Physics and AstronomyThermodynamicsPolymerFirst orderRandom coillaw.inventionchemistrylawLattice (order)Thermodynamic limitCrystallizationScalingEurophysics Letters (EPL)
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Unified Thermodynamic Modeling of Polymer Solutions: Polyelectrolytes, Proteins, and Chain Molecules

2013

The thermodynamic description of the systems specified in the title requires in general dissimilar theories. This contribution presents an approach that is capable of modeling all of them with a maximum of three adjustable parameters. The Ansatz starts from the Flory–Huggins theory and extends it in a 2-fold manner: The number of segments assigned to the solvent is no longer one but treated as an adjustable parameter to account for the differences in the molecular geometries and in the free volumes of the components. Furthermore, the modeling allows for effects resulting from ternary contacts of the solvent/polymer/polymer type. Examination of the acquired thermodynamic expressions by means…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesChemistryGeneral Chemical EngineeringThermodynamicsGeneral ChemistryPolymerIndustrial and Manufacturing EngineeringPolyelectrolyteCondensed Matter::Soft Condensed MatterMolecular geometryChain (algebraic topology)MoleculeTernary operationAnsatzMacromoleculeIndustrial & Engineering Chemistry Research
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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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A comparison of neutron scattering studies and computer simulations of polymer melts

2000

Abstract Neutron scattering and computer simulations are powerful tools for studying structural and dynamical properties of condensed matter systems in general and of polymer melts in particular. When neutron scattering studies and quantitative atomistic molecular dynamics simulations of the same material are combined, synergy between the methods can result in exciting new insights into polymer melts not obtainable from either method separately. We present here an overview of our recent efforts to combine neutron scattering and atomistic simulations in the study of melt dynamics of polyethylene and polybutadiene. Looking at polymer segmental motion on a picosecond time scale, we show how at…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesChemistryScatteringGeneral Physics and AstronomyPolymerNeutron scatteringSpectral lineCondensed Matter::Soft Condensed MatterMolecular dynamicsPolybutadieneChemical physicsPicosecondRelaxation (physics)Statistical physicsPhysical and Theoretical ChemistryChemical Physics
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Osmotic pressure of catenanes in solution

1989

We propose a nonuniversal scaling for the osmotic pressure in the case of concatenating ring polymers. The size exponent depends on the molecular weight of the catenans. The effect is more significant the shorter and the stiffer the molecules are.

chemistry.chemical_classificationQuantitative Biology::BiomoleculesChromatographyPolymers and PlasticsChemistryCatenaneThermodynamicsGeneral ChemistryPolymerCondensed Matter PhysicsRing (chemistry)Condensed Matter::Soft Condensed MatterMaterials ChemistryExponentChemical solutionMoleculeOsmotic pressureScalingPolymer Bulletin
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