Search results for "Particle size"

showing 10 items of 631 documents

Long-term cropping systems and tillage management effects on soil organic carbon stocks and steady state level of C sequestration rates in a semiarid…

2010

A calcareous and clayey xeric Chromic Haploxerept of a long-term experimental site in Sicily (Italy) was sampled (0–15 cm depth) under different land use management and cropping systems (CSs) to study their effect on soil aggregate stability and organic carbon (SOC). The experimental site had three tillage managements (no till [NT], dual-layer [DL] and conventional tillage [CT]) and two CSs (durum wheat monocropping [W] and durum wheat/faba bean rotation [WB]). The annually sequestered SOC with W was 2·75-times higher than with WB. SOC concentrations were also higher. Both NT and CT management systems were the most effective in SOC sequestration whereas with DL system no C was sequestered. …

chemistry.chemical_classificationConventional tillageMonocropping3303 DevelopmentSoil ScienceSoil carbonVertisolDevelopmentTillage2300 General Environmental ScienceNo-till farming10122 Institute of GeographyAgronomychemistrycarbon sequestration particle size-fraction soil aggregates soil organic matter pools2304 Environmental ChemistryEnvironmental ChemistryEnvironmental scienceOrganic matter910 Geography & travelcarbon sequestration particle size-fraction soil aggregates soil organic matter pools SicilyCalcareous1111 Soil ScienceGeneral Environmental Science
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Computational Study of Nanosized Drug Delivery from Cyclodextrins, Crown Ethers and Hyaluronan in Pharmaceutical Formulations

2015

Abstract The problem in this work is the computational characterization of cyclodextrins, crown ethers and hyaluronan (HA) as hosts of inclusion complexes for nanosized drug delivery vehicles in pharmaceutical formulations. The difficulty is addressed through a computational study of some thermodynamic, geometric and topological properties of the hosts. The calculated properties of oligosaccharides of D-glucopyranoses allow these to act as co-solvents of polyanions in water. In crown ethers, the central channel is computed. Mucoadhesive polymer HA in formulations releases drugs in mucosas. Geometric, topological and fractal analyses are carried out with code TOPO. Reference calculations are…

chemistry.chemical_classificationCyclodextrinsMolecular StructureStereochemistryChemistry PharmaceuticalGeneral MedicinePolymerFractal dimensionRelative stabilityNanostructuresMucoadhesive polymersDrug Delivery SystemsFractalchemistryCrown EthersDrug DiscoveryDrug deliveryPhysical chemistryReactivity (chemistry)Hyaluronic AcidParticle SizeHydrate
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Supramolecular organic-inorganic hybrid assemblies with tunable particle size: interplay of three noncovalent interactions.

2013

chemistry.chemical_classificationDendrimersMaterials scienceSupramolecular chemistryNanoparticleMetal NanoparticlesNanotechnologyGeneral ChemistrySulfidesCatalysisPolyelectrolyteColloidchemistryMicroscopy Electron TransmissionOrganic inorganicCadmium CompoundsNon-covalent interactionsSelf-assemblyParticle sizeGoldParticle SizeColoring AgentsAngewandte Chemie (International ed. in English)
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Salt concentration and particle density dependence of electrophoretic mobilities of spherical colloids in aqueous suspension.

2007

Using laser Doppler velocimetry in the superheterodyne mode, we conducted a systematic study of the electrophoretic mobility of dispersions of small silica spheres (a=18 nm) suspended in water at different salinities and particle concentrations. The concentration of NaCl was varied from 40 microM up to 16 mM, while the particle concentrations were varied between 4.2x10(18) and 2.1x10(20) m-3. We find a decrease of mobility with increasing salt concentrations and an increase with increased particle number densities. The latter observation is not backed by the standard cell model of electrophoresis with Shilov-Zharkikh boundary conditions. Rather, if the experimental data are interpreted with…

chemistry.chemical_classificationElectrophoresisParticle numberChemistryAnalytical chemistryWaterSodium ChlorideSilicon DioxideSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsSuspension (chemistry)BiomaterialsElectrophoresisColloid and Surface ChemistryModels ChemicalSuspensionsZeta potentialLaser-Doppler FlowmetryParticleParticle sizeColloidsCounterionParticle SizeParticle densityJournal of colloid and interface science
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Water repellency as conditioned by particle size and drying in hydrophobized sand

2013

The effects of particle size and soil moisture on water repellency (WR) from hydrophobized sand are studied in this research. Quartz sand samples were separated into three sieve fractions: 0.5–2 mm (coarse sand, CS), 0.25–0.5 mm (medium sand, MS), and 0.05–0.25 mm (fine sand, FS). WR of sand was induced using different concentrations of stearic acid (SA; 0.5, 1, 5, 10, 20 and 30 g kg− 1). Moist samples have been exposed to two types of drying: air-drying at standard laboratory conditions and oven-drying at 50 °C. Change in moisture content, and water repellency has been monitored every 24 h for 10 days. After 1 day of drying, SA concentrations ≥ 10 g kg− 1 caused extreme WR in oven-dry samp…

chemistry.chemical_classificationHydrologySoil ScienceFraction (chemistry)law.inventionSievechemistry.chemical_compoundchemistrylawEnvironmental chemistrySoil waterOrganic matterParticle sizeStearic acidWater contentQuartzGeoderma
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Maghemite polymer nanocomposites with modulated magnetic properties

2007

A method is presented for the production of maghemite polymer nanocomposites with modulated magnetic properties. Magnetic nanocomposites prepared using this method show regular variation in the magnetic blocking temperature from 2 K to 300 K, and variation in the saturation magnetization from 0 to 50 emu g � 1 (Fe2O3). The method is based on the in situ formation of maghemite nanoparticles in nitrogen-base polymer matrixes. The particle size can be varied regularly from 1.5 nm to 16 nm by changing the ratio of iron loading in the polymer and/or the Fe(II)/Fe(III) ratios. The particles are isolated and uniformly distributed within the matrix. The mate

chemistry.chemical_classificationIn situNanocompositeMaterials sciencePolymers and PlasticsPolymer nanocompositeMetals and AlloysMaghemiteNanoparticlePolymerengineering.materialElectronic Optical and Magnetic MaterialsNuclear magnetic resonancechemistryChemical engineeringCeramics and CompositesengineeringParticle sizeActa Materialia
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Study of the impact of wheat flour type, flour particle size and protein content in a cake-like dough: Proton mobility and rheological properties ass…

2012

International audience; The study of food products is always a challenge due to the number of components involved and the interactions that may occur between them. Water is a particular ingredient which interacts with all hydrophilic compounds, although affinities may differ for limiting water amount. During this study, results obtained using H-1 NMR on cake dough were compared in terms of the effects of flour type (soft or medium hard), the addition of gluten (5%-20%) and the use of soft flour fractions (flour particle fractions smaller or larger than 50 mu m). T-2 values and the signal intensities of different proton populations were studied as a function of the wheat protein contents of …

chemistry.chemical_classificationLow field NMReducation.field_of_studyGluten proteinsFlour particle sizeChemistrySoft wheat floursfungiPopulationWheat flourfood and beveragesBiochemistryGlutenIngredientRheologyProton NMRParticleParticle sizeFood scienceeducation[SDV.AEN]Life Sciences [q-bio]/Food and NutritionFood ScienceJournal of Cereal Science
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Structured Nanoparticles from the Self-Assembly of Polymer Blends through Rapid Solvent Exchange

2017

Molecular dynamics simulations were performed to study systematically the rapid mixing of a polymer blend in solution with a miscible nonsolvent. In agreement with experiments, we observe that polymers self-assemble into complex nanoparticles, such as Janus and core-shell particles, when the good solvent is displaced by the poor solvent. The emerging structures can be predicted on the basis of the surface tensions between the polymers as well as between the polymers and the surrounding liquid. Furthermore, the size of the nanoparticles can be independently tuned through the mixing rate and the polymer concentration in the feed stream; meanwhile, the composition of the nanoparticles can be c…

chemistry.chemical_classificationMaterials scienceMixing (process engineering)Nanoparticle02 engineering and technologySurfaces and InterfacesPolymer010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciences0104 chemical sciencesSolventMolecular dynamicsChemical engineeringchemistryPolymer chemistryElectrochemistryGeneral Materials ScienceParticle sizePolymer blendJanus0210 nano-technologySpectroscopyLangmuir
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Multi-scale simulations of polymeric nanoparticle aggregation during rapid solvent exchange.

2018

Using a multi-scale approach which combines both molecular dynamics (MD) and kinetic Monte Carlo (KMC) simulations, we study a simple and scalable method for fabricating charge-stabilized nanoparticles through a rapid solvent exchange, i.e., Flash NanoPrecipitation (FNP). This multi-scale approach is based on microscopic information from MD simulations and uses a KMC algorithm to access macroscopic length- and time scales, which allows direct comparison with experiments and quantitative predictions. We find good agreement of our simulation results with the experiments. In addition, the model allows us to understand the aggregation mechanism on both microscopic and macroscopic levels and det…

chemistry.chemical_classificationMaterials scienceMonte Carlo methodGeneral Physics and AstronomyNanoparticle02 engineering and technologyPolymer010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesMolecular dynamicsNanolithographychemistryScientific methodParticle sizeKinetic Monte CarloPhysical and Theoretical Chemistry0210 nano-technologyBiological systemThe Journal of chemical physics
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Influence of Hair Density and Hair Length on Interparticle Interactions of Spherical Polymer Brushes in a Homopolymer Matrix

2003

The dynamics of hairy spherical nanoparticles in a melt of linear polymer chains has been investigated by mechanical spectroscopy as a function of particle topology and concentration. Using a simple free volume approach for the data analysis of the structural relaxation time vs concentration and the well-known hard-sphere result as a reference, a semiquantitative measure for the interparticle interactions, that is particle deformability/softness, and the effective particle size compared to the size of a nonswollen spherical brush has been determined. For these studies, model particles of hairy nanoparticles differing in either hair length or grafting density have been prepared. In contrast …

chemistry.chemical_classificationMaterials sciencePolymers and PlasticsOrganic ChemistryNanoparticlePolymerGraftingMicelleViscoelasticityCondensed Matter::Soft Condensed MatterInorganic ChemistryChemical engineeringchemistryPolymer chemistryMaterials ChemistryCopolymerParticleParticle sizeMacromolecules
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