Search results for "Crystallization"

showing 10 items of 774 documents

Crystallization kinetics of colloidal binary mixtures with depletion attraction.

2014

In this work the crystallization kinetics of colloidal binary mixtures with attractive interaction potential (Asakura–Oosawa) has been addressed. Parameters such as fraction of crystals, linear crystal dimension and crystal packing have been quantified in order to understand how the crystal formation is driven in terms of the depth of the attractive potential and the composition of the binary mixture (described by the number ratio). It was found that inside the eutectic triangle, crystallization is mainly governed by nucleation and the crystal packing is close to the close-packing of hard spheres. Moving out from the eutectic triangle towards small component results in the crystallization o…

Materials scienceNucleationPhysics::OpticsGeneral ChemistryHard spheresCondensed Matter Physicslaw.inventionCondensed Matter::Soft Condensed MatterCrystalchemistry.chemical_compoundCrystallographyColloidchemistryChemical physicslawCondensed Matter::SuperconductivityStatic light scatteringPolystyreneCrystallizationEutectic systemSoft matter
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Crystallization of Vaterite Nanowires by the Cooperative Interaction of Tailor-Made Nucleation Surfaces and Polyelectrolytes

2005

The concepts of template-induced crystallization on self-assembled monolayers (SAMs) and the use of polymer additives are combined into a new strategy, where, through the cooperative interaction of a SAM matrix involved in the nucleation process, poly(acrylic acid), a dissolved polyelectrolyte, and the dissolved ions, hierarchically ordered mineral structures are formed. The adsorption of poly(acrylic acid) to the SAM is monitored using a quartz microbalance. Transmission electron microscopy measurements on samples that are taken from polyacrylate solution in short intervals after the start of the reaction reveals that nanometer-sized particles pre-formed in solution are being attached to t…

Materials scienceNucleationSelf-assembled monolayerCondensed Matter PhysicsPolyelectrolyteElectronic Optical and Magnetic MaterialsAmorphous solidlaw.inventionBiomaterialsCrystallographyAdsorptionChemical engineeringlawVateriteMonolayerElectrochemistryCrystallizationAdvanced Functional Materials
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Solidification of a colloidal hard sphere like model system approaching and crossing the glass transition

2014

We investigated the process of vitrification and crystallization in a model system of colloidal hard spheres. The kinetics of the solidification process was measured using time resolved static light scattering, while the time evolution of the dynamic properties was determined using time resolved dynamic light scattering. By performing further analysis we confirm that solidification of hard sphere colloids is mediated by precursors. Analyzing the dynamic properties we can show that the long time dynamics and thus the shear rigidity of the metastable melt is highly correlated with the number density of solid clusters (precursors) nucleated. In crystallization these objects convert into highly…

Materials scienceNumber densityNucleationGeneral ChemistryHard spheresCondensed Matter Physicslaw.inventionCondensed Matter::Soft Condensed MatterCrystallographyDynamic light scatteringChemical physicslawMetastabilityStatic light scatteringCrystallizationGlass transitionSoft Matter
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Influence of corona poling procedures on linear and non-linear optical properties of polymer materials containing indandione derivatives as a cromoph…

2008

SHG efficiency of the poled guest - host polymer system is proportional to the concentration and orientation degree of NLO active molecules (chromophores). Corona poling realized at elevated temperatures could cause concentration decrease of NLO- active molecules due to centrosymmetric crystallization. Our studies showed that number density of crystallites is depending on orientation procedure. To obtain the best orientation procedure for guest - host systems containing four different chromophores based on dimethylaminobenzylidene 1, 3 - indandione we have compared optical images and SHG efficiency of corona poled films. According to our observations external poling electric field applied f…

Materials scienceNumber densitybusiness.industryPolingNonlinear opticsSecond-harmonic generationMolecular physicsCorona polinglaw.inventionCorona (optical phenomenon)lawOptoelectronicsCrystalliteCrystallizationbusinessSPIE Proceedings
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A new approach for crystallization of copper(II) oxide hollow nanostructures with superior catalytic and magnetic response.

2015

We report the synthesis of copper(II) oxide hollow nanostructures at ambient pressure and close to room temperature by applying the soft templating effect provided by the confinement of droplets in miniemulsion systems. Particle growth can be explained by considering a mechanism that involves both diffusion and reaction control. The catalytic reduction of p-nitrophenol in aqueous media is used as a model reaction to prove the catalytic activity of the materials: the synthesized hollow structures show nearly 100 times higher rate constants than solid CuO microspheres. The kinetic behavior and the order of the reduction reaction change due to the increase of the surface area of the hollow str…

Materials scienceOxidechemistry.chemical_elementNanotechnologySelective catalytic reductionCopperlaw.inventionCopper(II) oxideCatalysisMiniemulsionchemistry.chemical_compoundReaction rate constantchemistryChemical engineeringlawGeneral Materials ScienceCrystallizationNanoscale
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Crystallization in charged two-component suspensions

2005

We report on the crystallization of colloidal crystals comprising of charged particles with different size ratio dispersed in thoroughly deionized water. Single components were characterized carefully and their nucleation behavior was investigated before the preparation of mixtures. Mixtures investigated at constant particle number densities showed body centred cubic structure, conductivity, and shear moduli comply with the assumption of a randomly substituted crystal. Most importantly, for the first time we obtain the dependence of the nucleation rate densities in dependence on the composition and (for one fixed composition) the particle number density. The process of nucleation in random …

Materials scienceParticle numberNucleationGeneral Physics and AstronomyThermodynamicsColloidal crystalCharged particlelaw.inventionShear modulusCrystalCrystallographyColloidlawPhysical and Theoretical ChemistryCrystallizationThe Journal of Chemical Physics
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ZnO-latex hybrids obtained by polymer-controlled crystallization: a spectroscopic investigation.

2007

Micro- and submicrosized ZnO-polymer hybrid materials were synthesized by precipitating zinc oxide from an aqueous medium in the presence of poly(styrene-acrylic acid) latex nanoparticles, prepared by miniemulsion polymerization. Up to 10 wt % of the latex becomes incorporated into the crystals. Although the long-range order of the inorganic material is essentially not altered by the polymer, studies by photoluminescence (PL) spectroscopy and electron paramagnetic resonance (EPR) show that the latex particles influence the optical and paramagnetic properties of the hybrids, which can be correlated with changes in the defect structure. Typical PL emission spectra showed a narrow UV peak and …

Materials sciencePhotoluminescenceLatexLightPhotochemistryPolymersUltraviolet RaysPhotochemistrylaw.inventionlawPolymer chemistryMaterials ChemistryPhysical and Theoretical ChemistryCrystallizationElectron paramagnetic resonanceSpectroscopychemistry.chemical_classificationPhotonsChemistry PhysicalElectron Spin Resonance SpectroscopyTemperaturePolymerSurfaces Coatings and FilmsNanostructuresMiniemulsionPolymerizationchemistryModels ChemicalSpectrophotometryMicroscopy Electron ScanningZinc OxideHybrid materialCrystallizationThe journal of physical chemistry. B
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RADICAL DISTRIBUTIONS IN AMMONIUM TARTRATE SINGLE CRYSTALS EXPOSED TO PHOTON AND NEUTRON BEAMS

2014

The radiation therapy carried out by means of heavy charged particles (such as carbon ions) and neutrons is rapidly becoming widespread worldwide. The success of these radiation therapies relies on the high density of energy released by these particles or by secondary particles produced after primary interaction with matter. The biological damages produced by ionising radiations in tissues and cells depend more properly on the energy released per unit pathlength, which is the linear energy transfer and which determines the radiation quality. To improve the therapy effectiveness, it is necessary to grasp the mechanisms of free radical production and distribution after irradiation with these …

Materials sciencePhotonFree RadicalsTrack nanodosimetryLinear energy transferElectronsRadiationMolecular physicsIonizing radiationMagneticsRadiation IonizingRadiology Nuclear Medicine and imagingHeavy IonsIrradiationCobalt RadioisotopesRadiometryTartratesNeutronsRange (particle radiation)PhotonsRadiationRadiological and Ultrasound TechnologyRadiation induced radicals ammonium tartrate pulsed electron paramagnetic resonanceelectron spin resonancePublic Health Environmental and Occupational HealthElectron Spin Resonance SpectroscopyGeneral MedicineCharged particleNeutron temperatureSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)CarbonGamma RaysTrack nanodosimetry; electron spin resonanceCrystallization
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EPR characterization of erbium in glasses and glass ceramics

2020

Electron paramagnetic resonance (EPR) is a well-established spectroscopic technique for electronic structure characterization of rare-earth ion impurities in crystalline and amorphous hosts. EPR spectra of erbium-doped glass matrices and nanocomposites can provide information about local structure variations induced by changes in chemical composition or crystallization processes. Characterization possibilities of Er3+ ions in glasses and glass ceramics including direct EPR measurements, indirect investigations via secondary paramagnetic probes, and optically detected magnetic resonance techniques are considered in this article. ----/ / /---- This is the pre-print of the following article: A…

Materials sciencePhysics and Astronomy (miscellaneous)Physics::OpticsGeneral Physics and Astronomychemistry.chemical_elementCondensed Matter::Disordered Systems and Neural Networks01 natural scienceslaw.inventionIonErbiumCondensed Matter::Materials ScienceParamagnetismImpuritylaw0103 physical sciences:NATURAL SCIENCES:Physics [Research Subject Categories]Crystallization010306 general physicsElectron paramagnetic resonanceglass010302 applied physicsglass ceramicsoxyfluorideCharacterization (materials science)Amorphous soliderbiumelectron paramagnetic resonance (EPR)chemistryPhysical chemistry
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The solidification behavior of a PBT/PET blend over a wide range of cooling rate

2009

In recent years, much attention has been paid to the development of high-performance polyester blends, among which blends of polybutylene terephthalate/polyethylene terephthalate (PBT/PET) are expected to exhibit remarkable properties as far as their crystallization behavior is concerned. Through trial and error, appropriate commercial compositions have been chosen which could not be otherwise explained by a suitable interpretation of the mechanisms determining their solidification behavior. The solidification behavior of a 60/40 w/w PBT/PET blend was studied in a wide range of cooling conditions, according to a continuous cooling transformation (CCT) procedure developed previously, aiming …

Materials sciencePolymers and Plastics02 engineering and technologyContinuous cooling transformation010402 general chemistry01 natural sciencesIndentation hardnesslaw.inventionchemistry.chemical_compoundlawPolymer chemistryMaterials ChemistryPolyethylene terephthalatePhysical and Theoretical ChemistryComposite materialCrystallizationchemistry.chemical_classificationPolymer021001 nanoscience & nanotechnologyCondensed Matter Physics0104 chemical sciencesPolyesterPolybutylene terephthalatechemistryPolymer blend0210 nano-technologyJournal of Polymer Science Part B: Polymer Physics
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