Search results for "Condensed Matter - Soft Condensed Matter"

showing 10 items of 364 documents

Stretching semiflexible polymer chains: Evidence for the importance of excluded volume effects from Monte Carlo simulation

2011

Semiflexible macromolecules in dilute solution under very good solvent conditions are modeled by self-avoiding walks on the simple cubic lattice ($d=3$ dimensions) and square lattice ($d=2$ dimensions), varying chain stiffness by an energy penalty $\epsilon_b$ for chain bending. In the absence of excluded volume interactions, the persistence length $\ell_p$ of the polymers would then simply be $\ell_p=\ell_b(2d-2)^{-1}q_b^{-1}$ with $q_b= \exp(-\epsilon_b/k_BT)$, the bond length $\ell_b$ being the lattice spacing, and $k_BT$ is the thermal energy. Using Monte Carlo simulations applying the pruned-enriched Rosenbluth method (PERM), both $q_b$ and the chain length $N$ are varied over a wide r…

Persistence lengthPhysicsQuantitative Biology::BiomoleculesWork (thermodynamics)PolymersMonte Carlo methodFOS: Physical sciencesGeneral Physics and AstronomyCondensed Matter - Soft Condensed MatterSquare latticeCondensed Matter::Soft Condensed MatterBond lengthLattice constantChain (algebraic topology)Excluded volumeSoft Condensed Matter (cond-mat.soft)Physical and Theoretical ChemistryMonte Carlo MethodMathematical physicsThe Journal of Chemical Physics
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Breakdown of the Kratky-Porod Wormlike Chain Model for Semiflexible Polymers in Two Dimensions

2011

By large-scale Monte Carlo simulations of semiflexible polymers in $d=2$ dimensions the applicability of the Kratky-Porod model is tested. This model is widely used as "standard model" for describing conformations and force versus extension curves of stiff polymers. It is shown that semiflexible polymers in $d=2$ show a crossover from hard rods to self-avoiding walks, the intermediate Gaussian regime (implied by the Kratky-Porod model) is completely absent. Hence the latter can also describe force versus extension curves only if the contour length is only a few times larger than the persistence length. Consequences for experiments on biopolymers at interfaces are briefly discussed.

Persistence lengthchemistry.chemical_classificationPhysicsQuantitative Biology::BiomoleculesChain modelGaussianMonte Carlo methodCrossoverGeneral Physics and AstronomyFOS: Physical sciencesPolymerCondensed Matter - Soft Condensed MatterRodCondensed Matter::Soft Condensed Mattersymbols.namesakechemistrysymbolsSoft Condensed Matter (cond-mat.soft)Statistical physicsStandard model (cryptography)
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Universal monomer dynamics of a two dimensional semi-flexible chain

2013

We present a unified scaling theory for the dynamics of monomers for dilute solutions of semiflexible polymers under good solvent conditions in the free draining limit. Our theory encompasses the well-known regimes of mean square displacements (MSDs) of stiff chains growing like t^{3/4} with time due to bending motions, and the Rouse-like regime t^{2 \nu / (1+ 2\nu)} where \nu is the Flory exponent describing the radius R of a swollen flexible coil. We identify how the prefactors of these laws scale with the persistence length l_p, and show that a crossover from stiff to flexible behavior occurs at a MSD of order l^2_p (at a time proportional to l^3_p). A second crossover (to diffusive moti…

Persistence lengthchemistry.chemical_classificationPhysicsQuantitative Biology::BiomoleculesScale (ratio)CrossoverFOS: Physical sciencesGeneral Physics and AstronomyPolymerBendingRadiusCondensed Matter - Soft Condensed MatterCondensed Matter::Soft Condensed MatterchemistryChain (algebraic topology)Biological Physics (physics.bio-ph)ExponentSoft Condensed Matter (cond-mat.soft)Statistical physicsPhysics - Biological Physics
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Semiflexible polymers under good solvent conditions interacting with repulsive walls.

2016

Solutions of semiflexible polymers confined by repulsive planar walls are studied by density functional theory and Molecular Dynamics simulations, to clarify the competition between the chain alignment favored by the wall and the depletion caused by the monomer-wall repulsion. A coarse-grained bead-spring model with bond bending potential is studied, varying both the contour length and the persistence length of the polymers, as well as the monomer concentration in the solution (good solvent conditions are assumed throughout, and solvent molecules are not included explicitly). The profiles of monomer density and pressure tensor components near the wall are studied, and the surface tension of…

Persistence lengthchemistry.chemical_classificationQuantitative Biology::BiomoleculesMaterials scienceGeneral Physics and AstronomyFOS: Physical sciences02 engineering and technologyRadiusPolymerCondensed Matter - Soft Condensed Matter010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesGyration0104 chemical sciencesSurface tensionCondensed Matter::Soft Condensed MatterMolecular dynamicschemistryLiquid crystalChemical physicsSoft Condensed Matter (cond-mat.soft)Density functional theoryPhysical and Theoretical Chemistry0210 nano-technologyThe Journal of chemical physics
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From capillary condensation to interface localization transitions in colloid-polymer mixtures confined in thin-film geometry.

2008

Monte Carlo simulations of the Asakura-Oosawa (AO) model for colloid-polymer mixtures confined between two parallel repulsive structureless walls are presented and analyzed in the light of current theories on capillary condensation and interface localization transitions. Choosing a polymer to colloid size ratio of q=0.8 and studying ultrathin films in the range of D=3 to D=10 colloid diameters thickness, grand canonical Monte Carlo methods are used; phase transitions are analyzed via finite size scaling, as in previous work on bulk systems and under confinement between identical types of walls. Unlike the latter work, inequivalent walls are used here: while the left wall has a hard-core rep…

Phase transitionCapillary waveMonte Carlo methodFOS: Physical sciencesMonte-Carlo simulationCondensed Matter - Soft Condensed Mattercomplex mixtures01 natural sciences010305 fluids & plasmasColloiddemixing transition in confinement0103 physical sciences010306 general physicsScalingPhysicsCondensed Matter - Materials ScienceCondensed matter physicsCapillary condensationdigestive oral and skin physiologyMaterials Science (cond-mat.mtrl-sci)3. Good healthUniversality (dynamical systems)Condensed Matter::Soft Condensed Mattercolloid-polymer mixturesSoft Condensed Matter (cond-mat.soft)Ising modelPhysical review. E, Statistical, nonlinear, and soft matter physics
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Two-state protein-like folding of a homopolymer chain

2010

Many small proteins fold via a first-order "all-or-none" transition directly from an expanded coil to a compact native state. Here we study an analogous direct freezing transition from an expanded coil to a compact crystallite for a simple flexible homopolymer. Wang-Landau sampling is used to construct the 1D density of states for square-well chains of length 128. Analysis within both the micro-canonical and canonical ensembles shows that, for a chain with sufficiently short-range interactions, the usual polymer collapse transition is preempted by a direct freezing or "folding" transition. A 2D free-energy landscape, built via subsequent multi-canonical sampling, reveals a dominant folding …

Phase transitionMaterials scienceEnergy landscapeFOS: Physical sciencesThermodynamicsPhi value analysis02 engineering and technologyPhysics and Astronomy(all)Condensed Matter - Soft Condensed MatterMicrocanonical thermodynamics01 natural sciences0103 physical sciencesFolding funnelProtein folding010306 general physicsCondensed Matter - Statistical MechanicsPhase transitionQuantitative Biology::BiomoleculesStatistical Mechanics (cond-mat.stat-mech)Energy landscape021001 nanoscience & nanotechnologyContact orderChevron plotWang-LandauSoft Condensed Matter (cond-mat.soft)Protein foldingDownhill folding0210 nano-technologyPhysics Procedia
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Confinement effects on phase behavior of soft matter systems.

2008

When systems that can undergo phase separation between two coexisting phases in the bulk are confined in thin film geometry between parallel walls, the phase behavior can be profoundly modified. These phenomena shall be described and exemplified by computer simulations of the Asakura-Oosawa model for colloid-polymer mixtures, but applications to other soft matter systems (e.g. confined polymer blends) will also be mentioned. Typically a wall will prefer one of the phases, and hence the composition of the system in the direction perpendicular to the walls will not be homogeneous. If both walls are of the same kind, this effect leads to a distortion of the phase diagram of the system in thin …

Phase transitionMaterials scienceFOS: Physical sciences02 engineering and technologySoft modesCondensed Matter - Soft Condensed Matter01 natural sciencesPhysics::Fluid DynamicsLiquid crystalPhase (matter)0103 physical sciencesLamellar structureSoft matter010306 general physicsMonte Carlo simulationphase behavior in confinementPhase diagramCondensed Matter - Materials ScienceChromatographyCondensed matter physicsCapillary condensationMaterials Science (cond-mat.mtrl-sci)colloidal systemsGeneral Chemistry021001 nanoscience & nanotechnologyCondensed Matter PhysicsCondensed Matter::Soft Condensed MatterSoft Condensed Matter (cond-mat.soft)0210 nano-technologySoft matter
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The smectic phase in semiflexible polymer materials: A large scale Molecular Dynamics study

2019

Abstract Semiflexible polymers in concentrated lyotropic solution are studied within a bead-spring model by molecular dynamics simulations, focusing on the emergence of a smectic A phase and its properties. We systematically vary the density of the monomeric units for several contour lengths that are taken smaller than the chain persistence length. The difficulties concerning the equilibration of such systems and the choice of appropriate ensemble (constant volume versus constant pressure, where all three linear dimensions of the simulation box can fluctuate independently) are carefully discussed. Using HOOMD-blue on graphics processing units, systems containing more than a million monomeri…

Phase transitionMaterials scienceGeneral Computer ScienceFOS: Physical sciencesGeneral Physics and Astronomy02 engineering and technologyCondensed Matter - Soft Condensed Matter010402 general chemistry01 natural sciencesMolecular dynamicsLiquid crystalPhase (matter)LyotropicGeneral Materials SciencePersistence lengthGeneral Chemistry021001 nanoscience & nanotechnology0104 chemical sciencesCondensed Matter::Soft Condensed MatterComputational MathematicsMechanics of MaterialsChemical physicsSoft Condensed Matter (cond-mat.soft)0210 nano-technologyStructure factorConstant (mathematics)
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Transitions of tethered chain molecules under tension

2014

An applied tension force changes the equilibrium conformations of a polymer chain tethered to a planar substrate and thus affects the adsorption transition as well as the coil-globule and crystallization transitions. Conversely, solvent quality and surface attraction are reflected in equilibrium force-extension curves that can be measured in experiments. To investigate these effects theoretically, we study tethered chains under tension with Wang-Landau simulations of a bond-fluctuation lattice model. Applying our model to pulling experiments on biological molecules we obtain a good description of experimental data in the intermediate force range, where universal features dominate and finite…

Phase transitionQuantitative Biology::BiomoleculesMaterials sciencePhase portraitTension (physics)PolymersGeneral Physics and AstronomyFOS: Physical sciencesCondensed Matter - Soft Condensed MatterModels TheoreticalCritical valuelaw.inventionCondensed Matter::Soft Condensed MatterChemical physicslawPhase (matter)Density of statesSoft Condensed Matter (cond-mat.soft)AdsorptionPhysical and Theoretical ChemistryCrystallizationLattice model (physics)
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Independent ion migration in suspensions of strongly interacting charged colloidal spheres

1999

We report on sytematic measurements of the low frequency conductivity in aequous supensions of highly charged colloidal spheres. System preparation in a closed tubing system results in precisely controlled number densities between 1E16/m3 and 1E19/m^3 (packing fractions between 1E-7 and 1E-2) and electrolyte concentrations between 1E-7 and 1E-3 mol/l. Due to long ranged Coulomb repulsion some of the systems show a pronounced fluid or crystalline order. Under deionized conditions we find s to depend linearily on the packing fraction with no detectable influence of the phase transitions. Further at constant packing fraction s increases sublinearily with increasing number of dissociable surfac…

Phase transitionRange (particle radiation)Condensed Matter - Materials ScienceMaterials scienceMaterials Science (cond-mat.mtrl-sci)FOS: Physical sciencesElectrolyteConductivityCondensed Matter - Soft Condensed MatterAtomic packing factorIonCondensed Matter::Soft Condensed MatterColloidChemical physicsSoft Condensed Matter (cond-mat.soft)ParticlePhysical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics
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