Search results for "Colloidal particle"

showing 10 items of 14 documents

Direct measurement of forces between particles and bubbles

1999

One of the elementary stages of the flotation process is the formation of an aggregate between the particle and a bubble. This aggregate formation is governed by hydrodynamic, capillary and interparticle forces. During the last four years, techniques have been developed to measure directly the force between a colloidal particle and a bubble. These techniques are closely related to the development of atomic force microscopy. Advantages and possibilities, as well as limits and drawbacks are described.

Condensed Matter::Soft Condensed MatterAggregate (composite)Geochemistry and PetrologyColloidal particleChemistryAtomic force microscopyCapillary actionBubbleAnalytical chemistryParticleMechanicsGeotechnical Engineering and Engineering GeologyMeasure (mathematics)International Journal of Mineral Processing
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Regular Horizontal Patterning on Colloidal Crystals Produced by Vertical Deposition

2009

Colloidal particles have proved to be a suitable precursor to the formation of nanoscaled materials. More explicitly, they are a suitable way to create photonic band gap materials in 3D. Several methods have been developed to assemble colloidal multilayer systems, and have yielded various levels of success. The vertical deposition method has shown itself to be one of the best in terms of time, control of the final product, crystal size and homogeneity. Despite this, the resulting crystals often present point defects, dislocations, cracks and polycrystallinity, as well as a horizontal modulation of film thickness. These defects compromise the possible utilities of the crystals. The study of …

CrystalColloidMaterials scienceColloidal particlebusiness.industryHomogeneity (physics)OptoelectronicsColloidal crystalbusinessCrystallographic defectPhotonic crystal
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Directed Assembly of Soft Colloids through Rapid Solvent Exchange

2015

We studied the directed assembly of soft nanoparticles through rapid micromixing of polymers in solution with a nonsolvent. Both experiments and computer simulations were performed to elucidate the underlying physics and to investigate the role of various process parameters. In particular, we discovered that no external stabilizing agents or charged end groups are required to keep the colloids separated from each other when water is used as the nonsolvent. Furthermore, the size of the nanoparticles can be reliably tuned through the mixing rate and the ratio between polymer solution and nonsolvent. Our results demonstrate that this mechanism is highly promising for the mass fabrication of un…

FabricationMaterials scienceMixing (process engineering)General Physics and AstronomyNanoparticleNanotechnology02 engineering and technology010402 general chemistry01 natural sciencesColloidComputer SimulationGeneral Materials ScienceColloidsParticle Sizechemistry.chemical_classificationGeneral EngineeringWaterPolymer021001 nanoscience & nanotechnology0104 chemical sciencesMicromixingSolutionsSolventKineticsModels ChemicalchemistryColloidal particleNanoparticlesPolystyrenesThermodynamics0210 nano-technologyACS Nano
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Measuring (biological) materials mechanics with atomic force microscopy. 2. Influence of the loading rate and applied force (colloidal particles)

2020

Atomic force microscopy (AFM) is the most often used tool to study the mechanical properties of eukaryotic cells. Due to their complex assembly, cells show viscoelastic properties. When performing experiments, one has to consider the influence of both loading rate and maximum load on the measured mechanical properties. Here, we employed colloidal particles of various sizes (from 2 to 20 μm diameter) to perform force spectroscopy measurements on endothelial cells at loading rates varying from 0.1 to 50 μm/s, and maximum loads ranging from 1 to 25 nN. We were able to determine the non-linear dependence of cell viscoelastic properties on the loading rate which followed a weak power law. In add…

HistologyMaterials scienceWork (physics)Force spectroscopyEndothelial CellsYoung's modulus030206 dentistry02 engineering and technologyMechanicsMicroscopy Atomic Force021001 nanoscience & nanotechnologyPower lawViscoelasticityStiffening03 medical and health sciencesMedical Laboratory Technologysymbols.namesake0302 clinical medicineColloidal particlesymbolsLoading rateAnatomy0210 nano-technologyInstrumentationMechanical PhenomenaMicroscopy Research and Technique
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Long-ranged and soft interactions between charged colloidal particles induced by multivalent coions

2015

Forces between charged particles in aqueous solutions containing multivalent coions and monovalent counterions are studied by the colloidal probe technique. Here, the multivalent ions have the same charge as the particles, which must be contrasted to the frequently studied case where multivalent ions have the opposite sign as the substrate. In the present case, the forces remain repulsive and are dominated by the interactions of the double layers. The valence of the multivalent coion is found to have a profound influence on the shape of the force curve. While for monovalent coions the force profile is exponential down to separations of a few nanometers, the interaction is much softer and lo…

Ionschemistry.chemical_classificationValence (chemistry)Aqueous solutionLatexSurface PropertiesForce profileChemistryStatic ElectricityGeneral ChemistrySilicon DioxideCondensed Matter PhysicsCharged particleIonColloidal probe techniqueCrystallographyColloidal particleChemical physicsddc:540Colloids[PHYS.PHYS.PHYS-CHEM-PH]Physics [physics]/Physics [physics]/Chemical Physics [physics.chem-ph]CounterionComputingMilieux_MISCELLANEOUS
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Fluorinated and pegylated polyaspartamide derivatives to increase solubility and efficacy of Flutamide

2012

New fluorinated amphiphilic copolymers based on a biocompatible polyaspartamide have been prepared in order to obtain polymeric micelles useful for delivering anticancer drugs. In particular, α,β-poly(N-2-hydroxyethyl)-d,l-aspartamide (PHEA) has been derivatized with polyethylene glycol (PEG(2000)) and ethylendiamine (EDA). Both these portions form the hydrophilic part of the copolymer, while the hydrophobic moiety is given by 1,2,4-oxadiazoles: 5-pentafluorophenyl-3-perfluoroheptyl-1,2,4-oxadiazole (PPOX) or 3-carboxyethyl-5-pentadecafluoroheptyl-1,2,4-oxadiazole (CPOX). Copolymers named PHEA-PEG(2000)-EDA-PPOX and PHEA-PEG(2000)-EDA-CPOX have been prepared with various degrees of derivati…

MaleAntineoplastic Agents HormonalPolymersSize-exclusion chromatographyPharmaceutical SciencePolyethylene glycolAdenocarcinomaPolyethylene Glycolschemistry.chemical_compoundDrug Delivery SystemsCell Line TumorPolymer chemistryCopolymerHumansSolubilityDerivatizationMicellesCell Proliferationchemistry.chemical_classificationDrug CarriersOxadiazolesProstatic NeoplasmsDihydrotestosteroneSettore CHIM/06 - Chimica OrganicaPolymerEthylenediaminesFlutamideCancer targeting cell model colloidal particles drug delivery polymerSolubilitychemistrySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoDrug deliveryChromatography GelMicroscopy Electron ScanningPyrenePeptidesHydrophobic and Hydrophilic InteractionsJournal of Drug Targeting
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Nanoparticles with Polymeric Surfaces

2004

Materials scienceChemical engineeringColloidal particleAtom-transfer radical-polymerizationNanoparticle
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Effective interactions of colloids on nematic films.

2008

The elastic and capillary interactions between a pair of colloidal particles trapped on top of a nematic film are studied theoretically for large separations $d$. The elastic interaction is repulsive and of quadrupolar type, varying as $d^{-5}$. For macroscopically thick films, the capillary interaction is likewise repulsive and proportional to $d^{-5}$ as a consequence of mechanical isolation of the system comprised of the colloids and the interface. A finite film thickness introduces a nonvanishing force on the system (exerted by the substrate supporting the film) leading to logarithmically varying capillary attractions. However, their strength turns out to be too small to be of importanc…

Materials scienceChemistry(all)Capillary actionBiophysicsPattern formationFOS: Physical sciencesNanotechnologyGeneral ChemistrySubstrate (electronics)Surfaces and InterfacesCondensed Matter - Soft Condensed MatterCondensed Matter::Soft Condensed MatterColloidMaterials Science(all)Colloidal particleLiquid crystalChemical physicsSoft Condensed Matter (cond-mat.soft)General Materials ScienceSoft matterBiotechnologyThe European physical journal. E, Soft matter
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Electrostatic Interactions Between Colloidal Particles

2020

Materials scienceColloidal particleChemical physicsElectrostatics
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Nucleation kinetics in deionized charged colloidal suspension

2011

A systematic experimental study on the nucleation, crystallization and crystal-growth of one-componentcharged colloidal particles (122 nm diluted in pure water with densities between 0.5 μm−3bnpb5 ...

Nucleation kineticsChemistryNucleationCrystal growthCondensed Matter PhysicsLight scatteringElectronic Optical and Magnetic Materialslaw.inventionColloidChemical engineeringlawColloidal particleMaterials ChemistryCeramics and CompositesPhysical chemistryCrystallizationJournal of Non-Crystalline Solids
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