Search results for "Dispersity"

showing 10 items of 207 documents

Evaluation of advanced silica packings for the separation of biopolymers by high-perforamnce liquid chromatography

1987

Non-porous monodisperse 1.5-μm silicas were allowed to react with (A) and (B) N-acetylaminopropyltriethoxysilane to generate bonded phases useful in high-performance hydrophobic-interaction chromatography (HIC). Differences in the selectivity were observed between he amide and the ether phase. Peak capacities between 10 and 30 were achieved for several proteins with the amide and ether phase packed into columns of 36 × 8 mm I.D. and elution of the proteins under chromatographic conditions in which the gradient volume, VG, was held constant by varying the gradient time between 20 and 2.5 min and the flow-rate between 0.5 and 4.0 ml/min. The S values derived from the dependences of log k′ on …

ChromatographyElutionChemistryHydrophilic interaction chromatographyOrganic ChemistryDispersityAnalytical chemistryGeneral MedicineReversed-phase chromatographyBiochemistryAnalytical ChemistryCountercurrent chromatographyVolume fractionThermoresponsive polymers in chromatographyChromatography columnJournal of Chromatography A
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Role of the co-surfactant nature in soybean w/o microemulsions.

2008

Abstract The influence of the co-surfactant on physicochemical properties of w/o soybean oil microemulsions (MEs) has been studied. In spite of the similarity in phase diagrams, the MEs display remarkable differences when examined by electrical conductivity, dynamic light scattering (DLS), small angle X-ray scattering (SAXS) and linear voltammetry. When different short-chain alcohols were employed as co-surfactants, together with sodium dodecyl sulfate (SDS) as surfactant, the DLS results indicated the systems to be monodisperse. Both the electrical conductivity of the MEs and the hydrodynamic radii of the droplets (RH) increased with water content while RH diminished as temperature increas…

ChromatographySmall-angle X-ray scatteringDispersityUltramicroelectrodeSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsBiomaterialschemistry.chemical_compoundColloid and Surface ChemistrychemistryChemical engineeringDynamic light scatteringPulmonary surfactantSodium sulfateMicroemulsionSodium dodecyl sulfateJournal of colloid and interface science
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An expansion–coalescence model to track gas bubble populations in magmas

2016

Abstract We propose a kinetic model that statistically describes the growth by decompression, exsolution and coalescence of a polydisperse population of gas bubbles in a silicate melt. The model is homogeneous in space and its main variable is a distribution function representing the probability to find a bubble of volume v and mass m at time t. The volume and mass growth rates are described by a simplification of the classical monodisperse bubble growth model. This simplification, which shortens computational time, removes the coupling between mass evolution and an advection–diffusion equation describing the behavior of the volatile concentration in the melt. We formulate three coalescence…

Coalescence (physics)Physicseducation.field_of_studyMaximum bubble pressure method010504 meteorology & atmospheric sciences[SDU.STU.GP]Sciences of the Universe [physics]/Earth Sciences/Geophysics [physics.geo-ph]BubblePopulationDispersityThermodynamicsMechanics010502 geochemistry & geophysicsCollision01 natural sciencesPhysics::Fluid DynamicsGeophysicsPlanarDistribution functionGeochemistry and PetrologyeducationComputingMilieux_MISCELLANEOUS0105 earth and related environmental sciences
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Polyorganosiloxane nanoparticles as optical tracers

2007

Polyorganosiloxane microgels have been synthesized by polycondensation in a microemulsion of trimethoxysilanes. Highly crosslinked rather monodisperse particles of radius about 10 nm are obtained.

ColloidChemistryDispersityAnalytical chemistryNanoparticleConcentration effectMicroemulsionRadiusHard spheresLight scattering
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Crystallization of hard-sphere colloids -- deviations from classical nucleation theory

2006

The creation of three-dimensional ordered colloidal crystals, for application in a range of nanotechnologies, has been a goal for many researchers in the past few years. The main difficulty in creating macroscopic sized crystals of densely packed colloidal particles is that colloidal particles always have a range of particle sizes - ie, they are polydisperse. This paper studied the crystallization kinetics of a hard-sphere colloid with a well defined Gaussian polydispersity. The authors find that crystallization occurs in two stages, and does not follow the simple classical nucleation picture. The paper discusses the implications of these results for research into colloidal crystals as poss…

ColloidMaterials scienceChemical physicslawDispersityNucleationParticleNanotechnologyClassical nucleation theoryColloidal crystalCrystallizationGrain sizelaw.invention2006 International Conference on Nanoscience and Nanotechnology
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Dye-Labeled Poly(organosiloxane) Microgels with Core−Shell Architecture

1999

Poly(organosiloxane) microgels are highly cross-linked rather monodisperse spherical particles of radius about 10 nm. Using a functionalized silane comonomer, i.e., (chlorobenzyl)trimethoxysilane, model particles suitable for studies in colloid physics are available:  photoreactive and fluorescent dyes can be covalently bound within the microgels to prepare tracers for diffusion studies using forced Rayleigh scattering (FRS) and fluorescence correlation spectroscopy (FCS). For the application as tracer particles, it is important not to influence the diffusion behavior by the coupled chromophores. Therefore, functionalized precursors with a core−shell architecture are used to minimize labeli…

ComonomerDispersityFluorescence correlation spectroscopySurfaces and InterfacesCondensed Matter PhysicsFluorescenceSilaneColloidchemistry.chemical_compoundPhotochromismchemistryChemical engineeringPolymer chemistryElectrochemistryRhodamine BGeneral Materials ScienceSpectroscopyLangmuir
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Soluble Hyperbranched Poly(glycolide) Copolymers

2010

A series of (hyper)branched poly(glycolide) copolymers has been prepared by copolymerization of glycolide (GA) with 2,2-bis(hydroxymethyl)butyric acid (BHB) via combined ROP/AB2-polycondensation. Polymerization was conducted in bulk and catalyzed by stanneous-2-ethyl hexanoate (Sn(Oct)2). The branched topology of the resulting polyesters was studied in detail by 1D- and 2D-NMR spectroscopy and confirmed by the synthesis and characterization of model compounds. The AB2 monomer BHB was incorporated either as a dendritic or focal unit, but hardly in linear or terminal mode. As expected for multifunctional polycondensation, SEC measurements showed polydisperse products with polydispersity index…

Condensation polymerPolymers and PlasticsChemistryOrganic ChemistryDispersityCondensation reactionRing-opening polymerizationInorganic Chemistrychemistry.chemical_compoundMonomerPolymerizationPolymer chemistryMaterials ChemistryCopolymerHydroxymethylMacromolecules
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Molecular parameters of hyperbranched polymers made by self-condensing vinyl polymerization. 1. Molecular weight distribution

1997

The molecular weight distribution (MWD) and its moments are calculated for hyperbranched polymers formed by self-condensing vinyl polymerization (SCVP) of monomers (“inimers”) with the general structure AB*, where A is a vinyl group and B* is an initiating group. The calculated MWD is extremely broad, the polydispersity index (PDI) being equal to the number-average degree of polymerization:  Pw/Pn = Pn. It is twice as broad as that for the polycondensation of AB2 type monomers. If the fraction of unreacted monomer is not taken into account, the MWD becomes somewhat narrower, P‘w/P‘n ≈ 0.40P‘n. The kinetics of the polymerization process are first order with respect to the concentration of vi…

Condensation polymerPolymers and PlasticsChemistryOrganic ChemistryDispersitySelf-condensationDegree of polymerizationInorganic ChemistryActive centerchemistry.chemical_compoundMonomerPolymerizationPolymer chemistryMaterials ChemistryMolar mass distribution
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Effective conductivity in a lattice model for binary disordered media with complex distributions of grain sizes

2003

Using numerical simulations and analytical approximations we study a modified version of the two-dimensional lattice model [R. Piasecki,phys. stat. sol. (b) 209, 403 (1998)] for random pH:(1-p)L systems consisting of grains of high (low) conductivity for H-(L-)phase, respectively. The modification reduces a spectrum of model bond conductivities to the two pure ones and the mixed one. The latter value explicitly depends on the average concentration gamma(p) of the H-component per model cell. The effective conductivity as a function of content p of the H-phase in such systems can be modelled making use of three model parameters that are sensitive to both grain size distributions, GSD(H) and G…

Condensed Matter - Materials ScienceMaterials scienceDispersityMaterials Science (cond-mat.mtrl-sci)FOS: Physical sciencesThermodynamicsDisordered Systems and Neural Networks (cond-mat.dis-nn)Function (mathematics)Condensed Matter - Disordered Systems and Neural NetworksConductivityCondensed Matter PhysicsMicrostructureMeasure (mathematics)Grain sizeElectronic Optical and Magnetic MaterialsPhase (matter)Lattice model (physics)physica status solidi (b)
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Small changes in particle-size distribution dramatically delay and enhance nucleation in hard sphere colloidal suspensions.

2006

We present hard-sphere crystallization kinetics for three samples with small differences in polydispersity. We show that an increase in polydispersity of 1% is sufficient to cause dramatic changes in the crystallization kinetics: Crystallization is delayed by almost one decade in time and quantitative and qualitative changes in the crystallization scenario are observed. Surprisingly the nucleation rate density is enhanced by almost a factor of 10. We interpret these results in terms of polydispersity limited growth, where local fractionation processes lead to a delayed but faster nucleation.

Crystallization kineticsColloidMaterials scienceChemical physicslawDispersityParticle-size distributionNucleationFractionationParticle sizeCrystallizationlaw.inventionPhysical review. E, Statistical, nonlinear, and soft matter physics
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