Search results for " sphere"

showing 10 items of 404 documents

Observation of Oriented Close-Packed Lattice Planes in Polycrystalline Hard-Sphere Solids.

1998

We report time-resolved Bragg scattering experiments on solidifying colloidal suspensions of hard spheres. The polar angle-averaged, integrated intensity of the (111) and (311) reflections show a transient, two-step behavior below melting, which depends in a complex way on the volume fraction and is not present for (200) or (220). Detailed analysis of the full two-dimensional scattering pattern reveals intensity maxima of sixfold symmetry close to the position of the (111) and (311) Debye-Scherrer rings. These can be explained assuming oriented crystals with close-packed planes parallel to the container walls. We show that the observed temporal behavior is due to competing homogeneous and h…

Materials scienceCondensed matter physicsScatteringbusiness.industryNucleationBragg's lawHard spheresLight scatteringSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsBiomaterialsColloid and Surface ChemistryOpticsLattice (order)Volume fractionCrystallitebusinessJournal of colloid and interface science
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Dynamics of crystallization in hard-sphere suspensions.

1996

Density fluctuations are monitored by small-angle light scattering during the crystallization of 0.22-\ensuremath{\mu}m-radius, hard colloidal spheres. Measured structure factors show an intensity maximum at finite-scattering vectors. The shape of the intensity distribution scales at early times during nucleation and growth and again at large times during ripening. At intermediate times there is a crossover region where scaling ceases to be valid. Both the amplitude and the position of the maximum intensity show quasi-power law behavior in time. The values of the observed exponents are within the range expected for classical growth models. The breadth of the intensity distribution increases…

Materials scienceCondensed matter physicsSpinodal decompositionlawVolume fractionNucleationThermodynamicsHard spheresRadiusCrystallizationLight scatteringIntensity (heat transfer)law.inventionPhysical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics
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Solvent-tuned ultrasonic synthesis of 2D coordination polymer nanostructures and flakes

2021

Highlights • Combined ultrasound and solvent assisted synthesis of 2D coordination polymers. • Role of interstitial solvent molecules in the delamination of 2D-CPs. • Influence of the sonication time in delamination and nanostructuration processes. • Morphological and supramolecular transformations in 2D-CPs.

Materials scienceCoordination sphereAcoustics and UltrasonicsCoordination polymerlcsh:QC221-246Infrared spectroscopychemistry.chemical_element02 engineering and technologyCrystal structure010402 general chemistry01 natural sciencesNanomaterialsInorganic Chemistrylcsh:Chemistrychemistry.chemical_compoundUltrasoundChemical Engineering (miscellaneous)Environmental ChemistryMoleculeRadiology Nuclear Medicine and imagingOriginal Research ArticleCoordination polymerNanomaterialsOrganic Chemistry2D MOF021001 nanoscience & nanotechnologyCopper0104 chemical sciencesSolventCoordination polymersCrystallographychemistrylcsh:QD1-999Delaminationlcsh:Acoustics. Sound0210 nano-technology
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Unravelling the spin-state of solvated [Fe(bpp)2]2+ spin-crossover complexes: structure–function relationship

2018

This paper reports firstly the syntheses, crystal structures, and thermal and magnetic properties of spin crossover salts of formulae [Fe(bpp)2]3[Cr(CN)6]2·13H2O (1) and [Fe(bpp)2][N(CN)2]2·H2O (2) (bpp = 2,6-bis(pyrazol-3-yl)pyridine) exhibiting hydrogen-bonded networks of low-spin [Fe(bpp)2]2+ complexes and [Cr(CN)6]3− or [N(CN)2]− anions, with solvent molecules located in the voids. Desolvation of 1 is accompanied by a complete low-spin (LS) to a high-spin (HS) transformation that becomes reversible after rehydration by exposing the sample to the humidity of air. The influence of the lattice water on the magnetic properties of spin-crossover [Fe(bpp)2]X2 complex salts has been documented…

Materials scienceCoordination sphereSpin statesHydrogen bondStacking02 engineering and technologyCrystal structure010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesInorganic Chemistrychemistry.chemical_compoundCrystallographychemistrySpin crossoverPyridineMolecule0210 nano-technologyDalton Transactions
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Effect of polydispersity on the crystallization kinetics of suspensions of colloidal hard spheres when approaching the glass transition

2007

We present a comprehensive study of the solidification scenario in suspensions of colloidal hard spheres for three polydispersities between 4.8% and 5.8%, over a range of volume fractions from near freezing to near the glass transition. From these results, we identify four stages in the crystallization process: (i) an induction stage where large numbers of precursor structures are observed, (ii) a conversion stage as precursors are converted to close packed structures, (iii) a nucleation stage, and (iv) a ripening stage. It is found that the behavior is qualitatively different for volume fractions below or above the melting volume fraction. The main effect of increasing polydispersity is to…

Materials scienceDispersityNucleationGeneral Physics and AstronomyHard sphereslaw.inventionCrystalCrystallographyColloidChemical engineeringlawVolume fractionPhysical and Theoretical ChemistryCrystallizationGlass transitionThe Journal of Chemical Physics
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Polymer-enforced crystallization of a eutectic binary hard sphere mixture

2010

We prepared a buoyancy matched binary mixture of polydisperse polystyrene microgel spheres of size ratio 0.785 and at a volume fraction of 0.567 just below the kinetic glass transition. In line with theoretical expectations, a eutectic phase behavior was observed, but only a minor fraction of the samples crystallized at all. By adding a short non-adsorbing polymer we enforce inter-species fractionation into coexisting pure component crystals, which in turn also shows signs of intra-species fractionation. We show that in formerly inaccessible regions of the phase diagram binary hard sphere physics is made observable using attractive hard spheres. Ancillary files: Correction to Soft Matter 20…

Materials scienceFOS: Physical sciencesThermodynamicsGeneral ChemistryHard spheresCondensed Matter - Soft Condensed MatterCondensed Matter Physicslaw.inventionlawPhase (matter)Volume fractionSoft Condensed Matter (cond-mat.soft)Soft matterCrystallizationGlass transitionPhase diagramEutectic systemSoft Matter
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Mode expansion for the density profiles of crystal–fluid interfaces: hard spheres as a test case

2012

We present a technique for analyzing the full three-dimensional density profiles of a planar crystal-fluid interface in terms of density modes. These density modes can also be related to crystallinity order parameter profiles which are used in coarse-grained, phase field type models of the statics and dynamics of crystal-fluid interfaces and are an alternative to crystallinity order parameters extracted from simulations using local crystallinity criteria. We illustrate our results for the hard sphere system using finely-resolved, three-dimensional density profiles from density functional theory of fundamental measure type.

Materials scienceField (physics)FOS: Physical sciencesHard spheresCondensed Matter - Soft Condensed MatterCondensed Matter PhysicsMeasure (mathematics)Computational physicsCrystallinityPlanarPhase (matter)Soft Condensed Matter (cond-mat.soft)General Materials ScienceDensity functional theoryStaticsJournal of Physics: Condensed Matter
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Spherical microgel colloids - Hard spheres from soft matter

1998

While gels are usually considered to be soft materials, we demonstrate that it is possible to model hard sphere behaviour when the gel structure is confined to spherical objects of sizes in the colloidal range. We have measured the static structure factor of microgel spheres dispersed in good solvents, differing in size, crosslink density and swelling behaviour, by light scattering and small angle neutron scattering. Comparing with theoretical calculations for polydisperse hard spheres we show how the interactions in highly concentrated dispersions of spherical microgel colloids are determined by an interplay of the relative length of dangling polymer ends at the surface (determined by the …

Materials scienceGeneral Chemical EngineeringHard spheresNeutron scatteringSmall-angle neutron scatteringCondensed Matter::Soft Condensed MatterCrystallographyChemical physicsVolume fractionmedicineParticle sizeSoft matterPhysics::Chemical PhysicsSwellingmedicine.symptomStructure factorBerichte der Bunsengesellschaft für physikalische Chemie
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A neutron tomography study: Probing the spontaneous crystallization of randomly packed granular assemblies

2018

We study the spontaneous crystallization of an assembly of highly monodisperse steel spheres under shaking, as it evolves from localized icosahedral ordering towards a packing reaching crystalline ordering. Towards this end, real space neutron tomography measurements on the granular assembly are carried out, as it is systematically subjected to a variation of frequency and amplitude. As expected, we see a presence of localized icosahedral ordering in the disordered initial state (packing fraction around 0.62). As the frequency is increased for both the shaking amplitudes (0.2 and 0.6 mm) studied here, there is a rise in packing fraction, accompanied by an evolution to crystallinity. The ext…

Materials scienceIcosahedral symmetrylcsh:MedicineFOS: Physical sciences02 engineering and technologyPhysics - Classical PhysicsCubic crystal systemCondensed Matter - Soft Condensed MatterAtomic packing factor01 natural sciencesArticlelaw.inventionCrystallinityTransition pointlaw0103 physical sciencesCrystallization010306 general physicslcsh:ScienceCondensed Matter - Statistical MechanicsMultidisciplinaryCondensed matter physicsStatistical Mechanics (cond-mat.stat-mech)lcsh:RClose-packing of equal spheresClassical Physics (physics.class-ph)021001 nanoscience & nanotechnologyAmplitudeSoft Condensed Matter (cond-mat.soft)lcsh:Q0210 nano-technologyScientific Reports
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Stacking faults in close-packed clusters

2002

Ground state geometries of small hard sphere clusters were studied using two different type of contact interaction, a pair-potential and a many-atom interaction. Monte Carlo method in an FCC lattice with all possible (111) stacking faults was used to obtain the minimum energy geometries for clusters up to 59 atoms. Due to the surface energy, FCC packing is generally favoured as opposite to the HCP structure. However, in most cluster sizes the ground state obtained with the many-atom interaction has one or more stacking faults. The most symmetric geometry is usually not the ground state. Clusters with 59 and 100 atoms were studied due the possibility of a high symmetry cluster with stacking …

Materials scienceLattice (order)Monte Carlo methodStackingCluster (physics)Hard spheresMoment of inertiaAtomic physicsGround stateMolecular physicsAtomic and Molecular Physics and OpticsSurface energyThe European Physical Journal D
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