Search results for "Molecular Dynamic"

showing 10 items of 1090 documents

Segmental dynamics in polymer electrolytes

2002

Polymer dynamics in poly(ethylene oxide) (PEO)–salt mixtures is investigated by means of quasi-elastic neutron scattering (QENS). In a previous study, we reported QENS data from the NEAT spectrometer (BENSC) that evidenced, for the first time, a dynamic heterogeneity in PEO–salt mixtures induced by salt addition. This finding is supported by molecular dynamics (MD) simulations carried out by Borodin et al. In agreement with MD simulations, our QENS data revealed two distinct processes: a fast motion corresponding to the bulk polymer and a slower relaxation, which we attribute to formation of PEO–cation complexes. In this paper we present new QENS data from the high-resolution spectrometer I…

chemistry.chemical_classificationMaterials scienceEthylene oxideSpectrometerPolymer electrolytesDynamics (mechanics)Relaxation (NMR)General ChemistryPolymerNeutron scatteringCrystallographyMolecular dynamicschemistry.chemical_compoundchemistryChemical physicsGeneral Materials ScienceApplied Physics A: Materials Science & Processing
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Microphase separation in linear multiblock copolymers under poor solvent conditions

2010

Molecular dynamics simulations are used to study the phase behavior of linear multiblock copolymers with two types of monomers, A and B, where the length of the polymer blocks $N_{A}$ and $N_{B}$ ($N_{A}=N_{B}=N$), the number of the blocks $n_{A}$ and $n_{B}$ ($n_{A}=n_{B}=n$), and the solvent quality varies. The fraction $f$ of A-type monomers is kept constant and equal to 0.5. Whereas at high enough temperatures these macromolecules form coil structures, where each block A or B forms rather individual clusters, at low enough temperatures A and B monomers from different blocks can join together forming clusters of A or B monomers. The dependence of the formation of these clusters on the va…

chemistry.chemical_classificationMaterials scienceFOS: Physical sciencesGeneral ChemistryJoin (topology)PolymerCondensed Matter - Soft Condensed MatterCondensed Matter PhysicsBlock (periodic table)SolventCrystallographychemistry.chemical_compoundMolecular dynamicsMonomerchemistryPhase (matter)Soft Condensed Matter (cond-mat.soft)Macromolecule
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Polymer Dynamics in a Polymer-Solid Interphase: Molecular Dynamics Simulations of 1,4-Polybutadiene At a Graphite Surface

2014

A chemically realistic model of 1,4-polybutadiene confined by graphite walls in a thin film geometry was studied by molecular dynamics simulations. The chemically realistic approach allows for a quantitative determination of a variety of experimentally accessible relaxation functions (e.g., dielectric, NMR, or neutron scattering responses). The simulations yield these experimental observables. Additionally, the simulations can be resolved as a function of distance to the solid interface on a much finer scale than experimentally possible, providing a detailed mechanistic picture of the segmental and large scale motions of polymers in the interfacial region between bulk polymer melts and soli…

chemistry.chemical_classificationMaterials scienceGeneral ChemistryDielectricPolymerNeutron scatteringCondensed Matter PhysicsCondensed Matter::Soft Condensed MatterMolecular dynamicsCrystallographychemistryChemical physicsRelaxation (physics)General Materials ScienceInterphaseGraphiteGlass transitionSoft Materials
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Critical adsorption of a single macromolecule in polymer brushes.

2014

The adsorption of long flexible macromolecules by polymer brush-coated surfaces is studied by molecular dynamics simulations and by calculations using density functional and self-consistent field theories. The case of repulsive interactions between the substrate surface and the monomers of both the brush polymers and the extra chains that can get absorbed into the brush is considered. Under good solvent conditions, critical absorption can occur, if the interaction between the monomers of the brush polymers and the extra chain is (weakly) attractive. It is shown that it is possible to map out the details of the critical absorption transition, if the chain length and/or the grafting density o…

chemistry.chemical_classificationMaterials scienceGeneral ChemistryPolymerPolymer adsorptionCondensed Matter Physicschemistry.chemical_compoundMolecular dynamicsMonomerAdsorptionchemistryChemical physicsPolymer chemistryFinite potential wellAbsorption (chemistry)MacromoleculeSoft matter
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Structure of Polymer-Grafted Nanoparticle Melts.

2020

The structure of neat melts of polymer-grafted nanoparticles (GNPs) is studied via coarse-grained molecular dynamics simulations. We systematically vary the degree of polymerization and grafting density at fixed nanoparticle (NP) radius and study in detail the shape and size of the GNP coronas. For sufficiently high grafting density, chain sections close to the NP core are extended and form a dry layer. Further away from the NP, there is an interpenetration layer, where the polymer coronas of neighboring GNPs overlap and the chain sections have almost unperturbed conformations. To better understand this partitioning, we develop a two-layer model, representing the grafted polymer around an N…

chemistry.chemical_classificationMaterials scienceGeneral EngineeringGeneral Physics and AstronomyNanoparticle02 engineering and technologyRadiusPolymerDegree of polymerization010402 general chemistry021001 nanoscience & nanotechnologyGrafting01 natural sciencesArticle0104 chemical sciencesMolecular dynamicsChain (algebraic topology)chemistryChemical physicsGeneral Materials Science0210 nano-technologyLayer (electronics)ACS nano
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Role of the Intercrystalline Tie Chains Network in the Mechanical Response of Semicrystalline Polymers

2017

We examine the microscopic origin of the tensile response in semicrystalline polymers by performing large-scale molecular dynamics simulations of various chain lengths. We investigate the microscopic rearrangements of the polymers during tensile deformation and show that the intercrystalline chain connections known as tie chains contribute significantly to the elastic and plastic response. These results suggest that the mechanical behavior of semicrystalline polymers is controlled by two interpenetrated networks of entanglements and tie chains.

chemistry.chemical_classificationMaterials scienceGeneral Physics and Astronomy02 engineering and technologyPolymer[SPI.MAT] Engineering Sciences [physics]/Materials010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences[SPI.MAT]Engineering Sciences [physics]/Materials0104 chemical sciencesMolecular dynamicsCrystallinitychemistryUltimate tensile strengthComposite materialTensile responseDeformation (engineering)0210 nano-technologyComputingMilieux_MISCELLANEOUSPhysical Review Letters
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Statistical properties of linear-hyperbranched graft copolymers prepared via "hypergrafting" of AB(m) monomers from linear B-functional core chains: …

2015

The reaction of ABm monomers (m = 2, 3) with a multifunctional Bf-type polymer chain ("hypergrafting") is studied by coarse-grained molecular dynamics simulations. The ABm monomers are hypergrafted using the slow monomer addition strategy. Fully dendronized, i.e., perfectly branched polymers are also simulated for comparison. The degree of branching of the molecules obtained with the "hypergrafting" process critically depends on the rate with which monomers attach to inner monomers compared to terminal monomers. This ratio is more favorable if the ABm monomers have lower reactivity, since the free monomers then have time to diffuse inside the chain. Configurational chain properties are also…

chemistry.chemical_classificationMaterials scienceHydrodynamic radiusGeneral Physics and AstronomyThermodynamicsPolymerBranching (polymer chemistry)Molecular dynamicschemistry.chemical_compoundMonomerchemistryPolymer chemistryCopolymerRadius of gyrationPolymer blendPhysical and Theoretical ChemistryThe Journal of chemical physics
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1993

4-(4-Carboxyphenyl)-3,5-dioxo-1,2,4-triazolidin-1-yl moieties resulting from 4-(3,5-dioxo-1,2,4-triazolin-4-yl)benzoic acid (U4A) randomly attached to 1,4-polybutadiene form supramolecular aggregates which act as effective junction zones in new thermoplastic elastomers. Deuteron nuclear magnetic resonance (2H NMR) spectroscopy was used to investigate the molecular dynamics of the polymer backbone and the junction zones in selectively labelled samples. The spectra show motional heterogeneity along the polymer chain as well as in the supramolecular domains. Polybutadiene segments which are adjacent to these polar clusters are restricted in their mobility, even at temperatures 100 K above the …

chemistry.chemical_classificationMaterials scienceHydrogen bondSupramolecular chemistryPolymerchemistry.chemical_compoundMolecular dynamicsNuclear magnetic resonanceMonomerPolybutadienechemistryPolymer chemistryThermoplastic elastomerGlass transitionDie Makromolekulare Chemie
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Disentangling the Role of Chain Conformation on the Mechanics of Polymer Tethered Particle Materials

2019

[Image: see text] The linear elastic properties of isotropic materials of polymer tethered nanoparticles (NPs) are evaluated using noncontact Brillouin light spectroscopy. While the mechanical properties of dense brush materials follow predicted trends with NP composition, a surprising increase in elastic moduli is observed in the case of sparsely grafted particle systems at approximately equal NP filling ratio. Complementary molecular dynamics simulations reveal that the stiffening is caused by the coil-like conformations of the grafted chains, which lead to stronger polymer–polymer interactions compared to densely grafted NPs with short chains. Our results point to novel opportunities to …

chemistry.chemical_classificationMaterials scienceMechanical EngineeringIsotropyLinear elasticityNanoparticleBioengineering02 engineering and technologyGeneral ChemistryPolymer021001 nanoscience & nanotechnologyCondensed Matter PhysicsBrillouin zoneMolecular dynamicschemistryChemical physicsParticleGeneral Materials Science0210 nano-technologyElastic modulusNano Letters
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Structured Nanoparticles from the Self-Assembly of Polymer Blends through Rapid Solvent Exchange

2017

Molecular dynamics simulations were performed to study systematically the rapid mixing of a polymer blend in solution with a miscible nonsolvent. In agreement with experiments, we observe that polymers self-assemble into complex nanoparticles, such as Janus and core-shell particles, when the good solvent is displaced by the poor solvent. The emerging structures can be predicted on the basis of the surface tensions between the polymers as well as between the polymers and the surrounding liquid. Furthermore, the size of the nanoparticles can be independently tuned through the mixing rate and the polymer concentration in the feed stream; meanwhile, the composition of the nanoparticles can be c…

chemistry.chemical_classificationMaterials scienceMixing (process engineering)Nanoparticle02 engineering and technologySurfaces and InterfacesPolymer010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciences0104 chemical sciencesSolventMolecular dynamicsChemical engineeringchemistryPolymer chemistryElectrochemistryGeneral Materials ScienceParticle sizePolymer blendJanus0210 nano-technologySpectroscopyLangmuir
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