Search results for "Biomolecule"

showing 10 items of 666 documents

Phase Behaviour of Dye-Containing Liquid Crystalline Copolymers and their Mixtures with Low Molecular Weight Liquid Crystals

1985

Liquid crystalline side-chain polymers can be obtained by connecting the mesogenic groups and the polymer chain via a flexible spacer. The liquid crystalline polymers combine the well-known properties of low molecular weight liquid crystals with those of polymers.1

chemistry.chemical_classificationQuantitative Biology::BiomoleculesMaterials scienceLiquid crystallineMesogenPolymereye diseasesPhysics::Fluid DynamicsCondensed Matter::Soft Condensed MatterCondensed Matter::Materials SciencechemistryLiquid crystalPhase (matter)Polymer chemistryCopolymersense organs
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Adsorption of Oligomers and Polymers into a Polymer Brush Formed from Grafted Ring Polymers

2013

The interaction of a ring polymer brush with a solution containing oligomers or free linear flexible macromolecules is studied by Monte Carlo simulation, varying the chain length of the free chains, and in selected cases also the lengths of the rings. Two grafting densities are studied, corresponding to semidilute and very concentrated conditions, and a comparison with the corresponding case of brushes formed from grafted linear chains is made. Although the ring polymer linear dimensions in the brushes show an anomalous scaling with ring length, similar to (noncatenated) ring polymer melts, the concentration profiles of oligomers and long macromolecules in ring polymer brushes differ only v…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesMaterials scienceMathematics::Commutative AlgebraPolymers and PlasticsPolymer scienceOrganic ChemistryBrushPolymer architecturePolymerRing (chemistry)GraftingPolymer brushlaw.inventionCondensed Matter::Soft Condensed MatterInorganic ChemistryComputer Science::GraphicsAdsorptionchemistrylawMaterials ChemistryMacromoleculeMacromolecules
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Nanoparticle dynamics in semidilute polymer solutions: Rings versus linear chains

2021

We study the dynamics of nanoparticles in semidilute solutions of ring and linear polymers using hybrid molecular dynamics–multiparticle collision dynamics simulations. The dynamics of the monomers, the polymer centers-of-mass, and the nanoparticles coincide for these two architectures for solutions of the same monomer concentration. The long time diffusivities of the nanoparticles follow the predictions of a polymer coupling theory [Cai et al., Macromolecules 44, 7853–7863 (2011)], suggesting that nanoparticle dynamics are coupled to segmental relaxations for both polymer architectures examined here. At intermediate time scales, the nanoparticle dynamics are characterized by subdiffusive e…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesMaterials scienceMechanical EngineeringDiffusionNanoparticlePolymerCondensed Matter PhysicsRing (chemistry)Thermal diffusivityCondensed Matter::Soft Condensed MatterCoupling (physics)chemistry.chemical_compoundMonomerchemistryMechanics of MaterialsChemical physicsGeneral Materials ScienceMacromoleculeJournal of Rheology
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1984

The fiber patterns of a series of liquid crystalline polymers were analysed. For polymers with smectic phases and for polymers with long spacers and nematic phases, the mesogenic groups orient perpendicularly to the polymer main chains which are parallel to the fiber axis. The fiber pattern indicate a short range order of the mesogenic groups analogous to that in low-molecular weight liquid crystals. For polymers with short spacer groups and nematic phases qualitatively different fiber patterns are found. These fiber patterns are indicative for a special nematic phase formed by ribbon-like molecules.

chemistry.chemical_classificationQuantitative Biology::BiomoleculesMaterials scienceMesogenPhysics::OpticsPolymerCondensed Matter::Soft Condensed MatterchemistryLiquid crystalPhase (matter)Polymer chemistryPerpendicularMoleculeFiberPendant groupDie Makromolekulare Chemie
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Monte carlo simulation of the glass transition of polymer melts

2007

The bond fluctuation model of polymer melts is presented as a reasonable compromise between simulation efficiency and realistic chemical detail. It is shown that inclusion of a potential energy that depends on the length of the effective bonds connecting the effective monomers easily creates a conflict between configurational entropy of dense packing and the energetic tendency of the bonds to stretch. This competition leads to a glass transition of the model, which very well describes many features of real systems.

chemistry.chemical_classificationQuantitative Biology::BiomoleculesMaterials scienceMonte Carlo methodConfiguration entropyThermodynamicsPolymerPotential energyCondensed Matter::Soft Condensed Matterchemistry.chemical_compoundMonomerchemistryGlass transitionSupercoolingBond fluctuation model
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Unexpectedly normal phase behavior of single homopolymer chains

2006

Employing Monte Carlo simulations, we show that the topology of the phase diagram of a single flexible homopolymer chain changes in dependence on the range of an attractive square well interaction between the monomers. For a range of attraction larger than a critical value, the equilibrium phase diagram of the single polymer chain and the corresponding polymer solution phase diagram exhibit vapor (swollen coil, dilute solution), liquid (collapsed globule, dense solution), and solid phases. Otherwise, the liquid-vapor transition vanishes from the equilibrium phase diagram for both the single chain and the polymer solution. This change in topology of the phase diagram resembles the behavior k…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesMaterials scienceMonte Carlo methodEnthalpyThermodynamicsPolymerConformational entropyCritical valueCondensed Matter::Soft Condensed MatterColloidchemistryEntropy (order and disorder)Phase diagramPhysical Review E
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A Monte Carlo study of diffusion in "living polymers"

1996

We report the first numeric experiments on diffusion in living polymers (polymers that can break and recombine reversibly, and are characterized by an exponential molecular weight distribution). In the simulation we use a modification of the bond fluctuation model which is known to reproduce the correct Rouse dynamics of polymer chains. The diffusion coefficient D reveals a Rouse-type behaviour D ∝ 1/L, where L is the average chain length of the polydisperse system. We also find a D ∝ exp [ − V/2kBT] dependence on the bond energy V, whereas at constant temperature the diffusion coefficient turns out to be inversely proportional, D ∝ ρ−1, to the monomer density of the system ρ in agreement w…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesMaterials scienceMonte Carlo methodGeneral Physics and AstronomyThermodynamicsPolymerExponential functionCondensed Matter::Soft Condensed Matterchemistry.chemical_compoundMonomerchemistryMolar mass distributionStatistical physicsDiffusion (business)Bond energyConstant (mathematics)Europhysics Letters (EPL)
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Anomalous scaling of the critical temperature of unmixing with chain length for two-dimensional polymer blends

2003

The thermodynamics, structure and the chain configurations of symmetrical polymer mixtures confined into ultrathin films are studied by Monte Carlo simulations of the bond fluctuation model. It is shown that the Flory-Huggins–type scaling of the critical temperature (Tc ~ N) with chain length N in the bulk is replaced by a weaker increase, Tc ~ N1/2, in an ultrathin film, and this is interpreted in terms of geometric arguments. The pair-correlation function g(r) of monomers from different chains exhibits a pronounced correlation hole, and the density of intermolecular contacts zc decreases with N as zc ~ N−1/2.

chemistry.chemical_classificationQuantitative Biology::BiomoleculesMaterials scienceMonte Carlo methodIntermolecular forceGeneral Physics and AstronomyThermodynamicsTwo-dimensional polymerPolymerCondensed Matter::Soft Condensed MatterChain (algebraic topology)chemistryPolymer blendConfined spaceScalingEurophysics Letters (EPL)
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Influence of chain stiffness on knottedness in single polymers.

2013

In the present article, we investigate and review the influence of chain stiffness on self-entanglements and knots in a single polymer chain with Monte Carlo simulations spanning good solvent, theta and globular phases. The last-named are of particular importance as a model system for DNA in viral capsids. Intriguingly, the dependence of knot occurrence and complexity with increasing stiffness is non-trivial, but can be understood with a few simple concepts outlined in the present article.

chemistry.chemical_classificationQuantitative Biology::BiomoleculesMaterials scienceMonte Carlo methodMolecular ConformationStiffnessModel systemNanotechnologyPolymerDNABiochemistryMolecular conformationKnot (unit)BiopolymerschemistrymedicineSolventsNucleic Acid ConformationStatistical physicsmedicine.symptomBiochemical Society transactions
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Modeling Studies of the Phase Behavior of Monomer/Polymer/Disk Composites

2008

The model developed by Balazs et al. to explain the phase behavior of polymer/clay composites is extended to monomer/polymer/clay composites, obtaining an expression for the free energy of a monomer/polymer/thin-disk mixture. By minimizing the free energy and calculating the chemical potentials of the three system components, phase diagrams for the monomer/disk and monomer/polymer/disk mixtures are contructed. Through the evolution and comparison of these diagrams, the effects of nanodisk size, polymer molecular mass and interaction parameters (temperature) on mixture stability and attained morphology are then studied.

chemistry.chemical_classificationQuantitative Biology::BiomoleculesMaterials scienceMorphology (linguistics)Polymers and PlasticsOrganic ChemistryPolymerCondensed Matter PhysicsCondensed Matter::Soft Condensed MatterInorganic Chemistrychemistry.chemical_compoundMonomerchemistryPhase (matter)Materials ChemistryComposite materialPhase diagramMacromolecular Theory and Simulations
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