Search results for "Condensed Matter - Soft Condensed Matter"

showing 10 items of 364 documents

Electronic signature of the instantaneous asymmetry in the first coordination shell of liquid water

2013

Interpretation of the X-ray spectra of water as evidence for its asymmetric structure has challenged the conventional symmetric nearly-tetrahedral model and initiated an intense debate about the order and symmetry of the hydrogen bond network in water. Here, we present new insights into the nature of local interactions in water obtained using a novel energy decomposition method. Our simulations reveal that while a water molecule forms, on average, two strong donor and two strong acceptor bonds, there is a significant asymmetry in the energy of these contacts. We demonstrate that this asymmetry is a result of small instantaneous distortions of hydrogen bonds, which appear as fluctuations on …

Absorption spectroscopymedia_common.quotation_subjectShell (structure)FOS: Physical sciencesGeneral Physics and AstronomyCondensed Matter - Soft Condensed Matter010402 general chemistry01 natural sciencesAsymmetryMolecular physicsGeneral Biochemistry Genetics and Molecular BiologySpectral linePhysics - Chemical Physics0103 physical sciencesMoleculeCondensed Matter - Statistical Mechanicsmedia_commonChemical Physics (physics.chem-ph)PhysicsMultidisciplinaryStatistical Mechanics (cond-mat.stat-mech)010304 chemical physicsHydrogen bondGeneral ChemistryComputational Physics (physics.comp-ph)AcceptorSymmetry (physics)0104 chemical sciencesCondensed Matter - Other Condensed MatterSoft Condensed Matter (cond-mat.soft)Physics - Computational PhysicsOther Condensed Matter (cond-mat.other)
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Critical behavior of a colloid-polymer mixture confined between walls

2006

We investigate the influence of confinement on phase separation in colloid-polymer mixtures. To describe the particle interactions, the colloid-polymer model of Asakura and Oosawa [J. Chem. Phys. 22, 1255 (1954)] is used. Grand canonical Monte Carlo simulations are then applied to this model confined between two parallel hard walls, separated by a distance D=5 colloid diameters. We focus on the critical regime of the phase separation and look for signs of crossover from three-dimensional (3D) Ising to two-dimensional (2D) Ising universality. To extract the critical behavior, finite size scaling techniques are used, including the recently proposed algorithm of Kim et al. [Phys. Rev. Lett. 91…

BinodalCondensed matter physicsCritical phenomenaFOS: Physical sciencesCondensed Matter - Soft Condensed MatterAtomic packing factorUniversality (dynamical systems)Condensed Matter::Soft Condensed MatterCritical point (thermodynamics)Soft Condensed Matter (cond-mat.soft)Ising modelStatistical physicsCritical exponentScalingMathematicsPhysical Review E
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Coupling between criticality and gelation in "sticky" spheres: a structural analysis.

2018

We combine experiments and simulations to study the link between criticality and gelation in sticky spheres. We employ confocal microscopy to image colloid-polymer mixtures and Monte Carlo simulations of the square-well (SW) potential as a reference model. To this end, we map our experimental samples onto the SW model. We find an excellent structural agreement between experiments and simulations, both for locally favored structures at the single particle level and large-scale fluctuations at criticality. We follow in detail the rapid structural change in the critical fluid when approaching the gas-liquid binodal and highlight the role of critical density fluctuations for this structural cro…

BinodalCouplingMaterials scienceSpinodal decompositionMonte Carlo methodFOS: Physical sciences02 engineering and technologyGeneral ChemistryCondensed Matter - Soft Condensed Matter021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesCondensed Matter::Soft Condensed MatterCriticalityStructural changeChemical physics0103 physical sciencesParticleSoft Condensed Matter (cond-mat.soft)SPHERES010306 general physics0210 nano-technologySoft matter
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Nucleation pathway and kinetics of phase-separating active Brownian particles

2016

Suspensions of purely repulsive but self-propelled Brownian particles might undergo phase separation, a phenomenon that strongly resembles the phase separation of passive particles with attractions. Here we employ computer simulations to study the nucleation kinetics and the microscopic pathway active Brownian disks take in two dimensions when quenched from the homogeneous suspension to propulsion speeds beyond the binodal. We find the same qualitative behavior for the nucleation rate as a function of density as for a passive suspension undergoing liquid-vapor separation, suggesting that the scenario of an effective free energy also extends to the kinetics of phase separation. We study the …

BinodalMaterials scienceStatistical Mechanics (cond-mat.stat-mech)KineticsNucleationFOS: Physical sciences02 engineering and technologyGeneral ChemistryCondensed Matter - Soft Condensed Matter021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesTransition stateSuspension (chemistry)Chemical physicsPhase (matter)0103 physical sciencesCluster (physics)Soft Condensed Matter (cond-mat.soft)010306 general physics0210 nano-technologyBrownian motionCondensed Matter - Statistical Mechanics
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The droplet evaporation/condensation transition in a finite volume

2003

A fluid in the NVT ensemble at T less than the critical temperature T_c and rho = N/V somewhat in excess of rho_coex (density of the saturated gas in the gas-liquid transition) is considered. For V->infinity, a macroscopic liquid droplet coexists with surrounding saturated gas according to the lever rule. For finite V, droplets can only exist if they exceed a minimum size. A (rounded) first order transition of the system occurs when the droplet evaporates into the supersaturated gas.Simulation evidence for this transition is given for a Lennard-Jones model and interpreted by a phenomenological theory. At the transition, the chemical potential difference mu_t-mu_coex scales like L^(-d/(d+…

BinodalPhysicsSupersaturationFinite volume methodStatistical Mechanics (cond-mat.stat-mech)CondensationThermodynamicsFOS: Physical sciencesStatistical mechanicsCondensed Matter - Soft Condensed MatterPhysics::Fluid DynamicsVolume (thermodynamics)Vapor–liquid equilibriumSoft Condensed Matter (cond-mat.soft)Lever ruleCondensed Matter - Statistical Mechanics
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Molecular Dynamics simulation of evaporation processes of fluid bridges confined in slit-like pore

2009

A simple fluid, described by point-like particles interacting via the Lennard-Jones potential, is considered under confinement in a slit geometry between two walls at distance Lz apart for densities inside the vapor-liquid coexistence curve. Equilibrium then requires the coexistence of a liquid "bridge" between the two walls, and vapor in the remaining pore volume. We study this equilibrium for several choices of the wall-fluid interaction (corresponding to the full range from complete wetting to complete drying, for a macroscopically thick film), and consider also the kinetics of state changes in such a system. In particular, we study how this equilibrium is established by diffusion proces…

BinodalRange (particle radiation)Materials scienceCapillary actionEvaporationThermodynamicsFOS: Physical sciencesCondensed Matter - Soft Condensed MatterPhysics::Fluid DynamicsMolecular dynamicsVolume (thermodynamics)Soft Condensed Matter (cond-mat.soft)WettingDiffusion (business)
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A probabilistic model for crystal growth applied to protein deposition at the microscale

2018

A probabilistic discrete model for 2D protein crystal growth is presented. This model takes into account the available space and can describe growing processes of different nature due to the versatility of its parameters which gives the model great flexibility. The accuracy of the simulation is tested against a real protein (SbpA) crystallization experiment showing high agreement between the proposed model and the actual images of the nucleation process. Finally, it is also discussed how the regularity of the interface (i.e. the curve that separates the crystal from the substrate) affects to the evolution of the simulation.

Biological Physics (physics.bio-ph)Soft Condensed Matter (cond-mat.soft)FOS: Physical sciencesPhysics - Biological PhysicsCondensed Matter - Soft Condensed Matter92-08
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Cell-sized confinements alter molecular diffusion in concentrated polymer solutions due to length-dependent wetting of polymers

2023

Living cells are characterized by the micrometric confinement of various macromolecules at high concentrations. Using droplets containing binary polymer blends as artificial cells, we previously showed that cell-sized confinement causes phase separation of the binary polymer solutions because of the length-dependent wetting of the polymers. Here we demonstrate that the wetting-induced heterogeneity of polymers also emerges in single-component polymer solutions. The resulting heterogeneity leads to a slower transport of small molecules at the center of cell-sized droplets than that in bulk solutions. This heterogeneous distribution is observed when longer polymers with lower wettability are …

BiomaterialsPolymers and PlasticsBiological Physics (physics.bio-ph)Materials ChemistrySoft Condensed Matter (cond-mat.soft)FOS: Physical sciencesPhysics - Biological PhysicsCondensed Matter - Soft Condensed MatterElectronic Optical and Magnetic Materials
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Connectivity percolation in suspensions of hard platelets

2012

We present a study on connectivity percolation in suspensions of hard platelets by means of Monte Carlo simulation. We interpret our results using a contact-volume argument based on an effective single--particle cell model. It is commonly assumed that the percolation threshold of anisotropic objects scales as their inverse aspect ratio. While this rule has been shown to hold for rod-like particles, we find that for hard plate-like particles the percolation threshold is non-monotonic in the aspect ratio. It exhibits a shallow minimum at intermediate aspect ratios and then saturates to a constant value. This effect is caused by the isotropic-nematic transition pre-empting the percolation tran…

Blood PlateletsModels MolecularMaterials scienceMonte Carlo method: Physics [G04] [Physical chemical mathematical & earth Sciences]FOS: Physical sciencesNanotechnologyCondensed Matter - Soft Condensed MatterSuspensionsHardnessAnimalsHumansComputer SimulationColloidsAnisotropyCondensed Matter - Statistical MechanicsComplex fluidCondensed matter physicsStatistical Mechanics (cond-mat.stat-mech)Models CardiovascularPercolation thresholdThermal conductionAspect ratio (image)Directed percolation: Physique [G04] [Physique chimie mathématiques & sciences de la terre]Models ChemicalPercolationSoft Condensed Matter (cond-mat.soft)Rheology
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Growth of immobilized DNA by polymerase: bridging nanoelectrodes with individual dsDNA molecules.

2011

We present a method for controlled connection of gold electrodes with dsDNA molecules (locally on a chip) by utilizing polymerase to elongate single-stranded DNA primers attached to the electrodes. Thiol-modified oligonucleotides are directed and immobilized to nanoscale electrodes by means of dielectrophoretic trapping, and extended in a procedure mimicking PCR, finally forming a complete dsDNA molecule bridging the gap between the electrodes. The technique opens up opportunities for building from the bottom-up, for detection and sensing applications, and also for molecular electronics.

Bridging (networking)Sensing applicationsFOS: Physical sciencesNanotechnology02 engineering and technologyDNA-Directed DNA PolymeraseCondensed Matter - Soft Condensed Matter03 medical and health sciencesMoleculeNanotechnologyGeneral Materials SciencePhysics - Biological PhysicsElectrodesPolymerase030304 developmental biologyDNA PrimersFluorescent Dyes0303 health sciencesbiologyImmobilized DNAta114OligonucleotideChemistryta1182Molecular electronicsDNA021001 nanoscience & nanotechnologyCondensed Matter - Other Condensed MatterBiological Physics (physics.bio-ph)Electrodebiology.proteinSoft Condensed Matter (cond-mat.soft)Gold0210 nano-technologyNucleic Acid Amplification TechniquesOther Condensed Matter (cond-mat.other)Nanoscale
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