Search results for "Solution theory"

showing 10 items of 90 documents

Intrinsic viscosities of polyelectrolytes in the absence and in the presence of extra salt: Consequences of the stepwise conversion of dextran into a…

2011

Abstract Viscosities of dilute polymer solutions were measured in capillary viscometers for samples varying in their fraction f of charged units from 0.00 to 0.90. The dependence of the logarithm of the relative viscosity on polymer concentration c is in all cases reproduced quantitatively by three characteristic parameters: [ η ], the intrinsic viscosity; B , a viscometric interaction parameter (related to the Huggins constant); [ η ] , a parameter required only for polyelectrolytes at low concentrations of extra salt. In pure water [ η ] increases more than 80 times as the fraction f rises from zero to 0.90 and [ η ] starts from zero and goes up to ≈71 mL/g. Upon the addition of NaCl [ η …

chemistry.chemical_classificationPolymers and PlasticsChemistryIntrinsic viscosityRelative viscosityOrganic ChemistryViscometerThermodynamicsPolymerFlory–Huggins solution theoryPolyelectrolytesymbols.namesakeBoltzmann constantPolymer chemistryMaterials ChemistrysymbolsOrder of magnitudeCarbohydrate polymers
researchProduct

Stimuli-responsive brushes with active minority components: Monte Carlo study and analytical theory

2015

Using a combination of analytical theory, Monte Carlo simulations, and three dimensional self-consistent field calculations, we study the equilibrium properties and the switching behavior of adsorption-active polymer chains included in a homopolymer brush. The switching transition is driven by a conformational change of a small fraction of minority chains, which are attracted by the substrate. Depending on the strength of the attractive interaction, the minority chains assume one of two states: An exposed state characterized by a stem-crown-like conformation, and an adsorbed state characterized by a flat two-dimensional structure. Comparing the Monte Carlo simulations, which use an Edwards-…

chemistry.chemical_classificationPolymers and PlasticsChemistryOrganic ChemistryMonte Carlo methodBrushFOS: Physical sciencesPolymerFlory–Huggins solution theoryCondensed Matter - Soft Condensed Matterlaw.inventionCondensed Matter::Soft Condensed MatterInorganic Chemistrysymbols.namesakelawThermalExcluded volumeMaterials ChemistrysymbolsDynamic Monte Carlo methodSoft Condensed Matter (cond-mat.soft)Statistical physicsHamiltonian (quantum mechanics)
researchProduct

A procedure for predicting sorption equilibrium in ternary polymer systems from Flory–Huggins binary interaction parameters and the inversion point o…

1989

A procedure has been developed, based on the Flory–Huggins theory as generalized by Pouchlý, which permits the calculation of preferential (λ) and total (Y) sorption coefficients from previous information on the binary interaction parameters, χ, χ, and g12(ϕ10) and on the mixture composition at which the sign of λ inverts. The expressions obtained were applied to 10 cosolvent polymer systems for which experimental values of λ and Y are known. Practically in all the studied systems, the theoretical predictions are in fair accordance with the experimental data.

chemistry.chemical_classificationPolymers and PlasticsChemistrySolvationBinary numberThermodynamicsSorptionPolymerFlory–Huggins solution theoryCondensed Matter PhysicsThermodynamic modelPolymer chemistryMaterials ChemistryChemical solutionPhysical and Theoretical ChemistryTernary operationJournal of Polymer Science Part B: Polymer Physics
researchProduct

A Flory–Huggins thermodynamic approach for predicting sorption equilibrium in ternary polymer systems

1989

The Flory–Huggins theory as modified by Pouchlý has been applied to calculate preferential (λ) and total (Y) sorption coefficients for a ternary polymer system. The ternary interaction function (ϕ1ϕ2ϕ3GT(u1, ϕ3)) is described as the product of three independent binary functions. This expression allows prediction of λ and Y from binary interaction parameters χ, χ, g, g, and g12(ϕ10). Three ternary polymer systems are used to check the validity of the expression. Moreover for polymer systems in which the parameters g and/or g are unknown, a procedure to evaluate them has been developed and verified on systems for which sufficient experimental information is available.

chemistry.chemical_classificationPolymers and PlasticsChemistryThermodynamicsBinary numberSorptionPolymerFlory–Huggins solution theoryExpression (computer science)Condensed Matter PhysicsInteraction functionPolymer chemistryMaterials ChemistryChemical solutionPhysical and Theoretical ChemistryTernary operationJournal of Polymer Science Part B: Polymer Physics
researchProduct

Branched Versus Linear Polyisoprene: Flory-Huggins Interaction Parameters for their Solutions in Cyclohexane

2009

Flory-Huggins interaction parameters were determined as a function of composition for solutions of linear and of branched polyisoprene in cyclohexane (CH) at 25, 45, and 65 °C by means of vapor pressure measurements (moderate to concentrated solutions) and by vapor pressure osmometry (dilute solutions). The results demonstrate that CH is a considerably worse solvent for branched polyisoprene than for the linear analog at all temperatures and at all compositions. This observation corroborates the expectation based on a recent phenomenological approach, which accounts explicitly for the incapability of the segments of an individual polymer molecule to spread out over the entire volume of the …

chemistry.chemical_classificationPolymers and PlasticsCyclohexaneVapor pressureVapor pressure osmometryOrganic ChemistryConcentration effectPolymerFlory–Huggins solution theoryCondensed Matter Physicschemistry.chemical_compoundchemistryPolymer chemistryMaterials ChemistryMoleculeBinary systemPhysical and Theoretical ChemistryMacromolecular Chemistry and Physics
researchProduct

PEO/CHCl3. Crystallinity of the Polymer and Vapor Pressure of the Solvent. Equilibrium and Nonequilibrium Phenomena

2003

Vapor pressures were measured for the system CHCl3/PEO 1000 (PEO stands for poly(ethylene oxide) and 1000 for Mw in kg/mol) at 25 °C as a function of the weight fraction w of the polymer by means of a combination of headspace sampling and gas chromatography. The establishment of thermodynamic equilibria was assisted by employing thin polymer films. The degrees of crystallinity α of the pure PEO and of the solid polymer contained in the mixtures were determined via DSC. An analogous degree of polymer insolubility β was calculated from the vapor pressures measured in this composition range. The experiments demonstrate that both quantities and their concentration dependence are markedly affect…

chemistry.chemical_classificationPolymers and PlasticsEthylene oxideVapor pressureOrganic Chemistrytechnology industry and agricultureConcentration effectPolymerFlory–Huggins solution theoryAmorphous solidInorganic Chemistrychemistry.chemical_compoundCrystallinitychemistryChemical engineeringMaterials ChemistryOrganic chemistryBinary systemMacromolecules
researchProduct

Composition-dependent Flory-Huggins parameters: molecular weight influences at high concentrations

1995

Flory-Huggins interaction parameters X were determined by means of equilibrium vapor pressures (measured via a combination of a head-space sampler with a gas chromatograph) and light scattering as a function of composition and temperature for the systems cyclohexanone/polystyrene [CHO/PS] and cyclohexanone/poly(butyl methacrylate) [CHO/PBMA]. The investigation of molecular weight influences on X with the system CHO/PBMA demonstrates that they persist almost up to the pure polymer. In order to rationalize this result, it is postulated (in accord with experimental findings and theoretical predictions) that the dimensions of polymer chains may vary upon the addition of solvent even in highly c…

chemistry.chemical_classificationPolymers and PlasticsOrganic ChemistryEnthalpyCyclohexanoneConcentration effectPolymerFlory–Huggins solution theoryCondensed Matter PhysicsLight scatteringSolventchemistry.chemical_compoundchemistryPolymer chemistryMaterials ChemistryPolystyrenePhysical and Theoretical ChemistryMacromolecular Chemistry and Physics
researchProduct

Dextran-Based Polycations: Thermodynamic Interaction with Water as Compared With Unsubstituted Dextran, 2 - Flory/Huggins Interaction Parameter

2011

chemistry.chemical_classificationPolymers and PlasticsOrganic ChemistryFlory–Huggins solution theoryCondensed Matter PhysicsPolysaccharidePolyelectrolytechemistry.chemical_compoundDextranchemistryPolymer chemistryMaterials ChemistryPhysical and Theoretical ChemistryWater soluble polymersMacromolecular Chemistry and Physics
researchProduct

Evidence of ternary interaction parameters for polymer solutions in mixed solvents from headspace-gas chromatography

2000

Partial vapor pressures of the volatiles have been measured for four solvent/precipitant/polymer systems at different temperatures. The high molecular weight compounds were polysulfone or polyethersulfone and the mixed solvent was either DMF/acetone or DMF/water. Systems containing the very powerful precipitant water exhibit a special phenomenon: Upon the addition of polymer to a mixed solvent of constant composition the partial vapor pressure of water increases by a factor of more than two before it falls to zero as the volume fraction of the polymer approaches unity. This particular situation cannot be modeled using binary interaction parameters only, in contrast to the results obtained w…

chemistry.chemical_classificationPolymers and PlasticsOrganic ChemistryVapour pressure of waterAnalytical chemistryPolymerFlory–Huggins solution theorySolventchemistry.chemical_compoundchemistryVolume fractionMaterials ChemistryAcetoneOrganic chemistryPolysulfoneTernary operationPolymer
researchProduct

Polymer-Polymer Interaction: Consistent Modeling in Terms of Chain Connectivity and Conformational Response

2006

An approach developed for the modeling of polymer solutions is extended to polymer blends. It accounts explicitly for the fact that the segments of a given macromolecule cannot spread out over the entire volume of the system (chain connectivity) and that the space a polymer molecule occupies may change after contact formation between the components of a mixture (conformational response ζ). The validity of the equation obtained for the Flory-Huggins interaction parameter between polymers is tested by means of critical data published for the system PVME/PS. The measured phase diagrams can be modeled equally well by two limiting assumptions concerning the temperature dependence of the conforma…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesMolar massPolymers and PlasticsChemistryOrganic ChemistryPolymerFlory–Huggins solution theoryCondensed Matter PhysicsCondensed Matter::Soft Condensed MatterPhase (matter)Polymer chemistryMaterials ChemistryMoleculePolymer blendPhysical and Theoretical ChemistryWell-definedPhase diagramMacromolecular Chemistry and Physics
researchProduct