Search results for "Colloid"

showing 10 items of 1288 documents

Qualitative characterisation of effective interactions of charged spheres on different levels of organisation using Alexander’s renormalised charge a…

2005

Abstract Effective interactions are conveniently determined from experimental or numerical data by fitting a Debye–Huckel potential with an effective charge Z ∗ and an effective electrolyte concentration c ∗ as free parameters. In this contribution we numerically solved the Poisson–Boltzmann equation to obtain the so-called renormalised charge Z PBC ∗ . For sufficiently large bare charge Z one finds a saturation of Z ∗ which scales as Z ∗ = A a / λ B , where a is the particle radius, λ B the Bjerrum length and A a proportionality factor of order (8–10). The saturation value increases with increased total micro-ion concentration and shows a shallow minimum as a function of packing fraction. …

Shear modulusMolecular dynamicsColloid and Surface ChemistryClassical mechanicsChemistryCharge (physics)Poisson–Boltzmann equationAtomic packing factorBjerrum lengthMolecular physicsEffective nuclear chargeIonColloids and Surfaces A: Physicochemical and Engineering Aspects
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Ordering of two-dimensional crystals confined in strips of finite width.

2007

Monte Carlo simulations are used to study the effect of confinement on a crystal of point particles interacting with an inverse power law potential $\ensuremath{\propto}{r}^{\ensuremath{-}12}$ in $d=2$ dimensions. This system can describe colloidal particles at the air-water interface, a model system for experimental study of two-dimensional melting. It is shown that the state of the system (a strip of width $D$) depends very sensitively on the precise boundary conditions at the two ``walls'' providing the confinement. If one uses a corrugated boundary commensurate with the order of the bulk triangular crystalline structure, both orientational order and positional order is enhanced, and suc…

Shear modulusPhysicsPhase transitionCondensed matter physicsLattice (order)Logarithmic growthHexagonal latticeIsing modelBoundary value problemColloidal crystalPhysical review. E, Statistical, nonlinear, and soft matter physics
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Effect of several electrolytes on the rheopectic behaviour of concentrated soy lecithin dispersions

2005

Abstract Concentrated dispersions of soy lecithin (60 g/L) prepared by sonication-freezing–unfreezing method show a non-newtonian behaviour and a significant rheopexy. Shear stress versus shear rate plots shows a loop hysteresis area, which have been studied in soy lecithin dispersions prepared with aqueous solutions of various electrolytes (NaCl, CaCl2, MgCl2 and AlCl3) with concentrations in the range 10−5 to 10−2 mol/L. Also we have studied the effect of different pH on soy lecithin dispersions. The results have revealed a very sensitive influence of nature, valence and concentration of the respective cations and the pH value on the loop hysteresis area values. It seems to indicate that …

Shear ratechemistry.chemical_compoundColloid and Surface ChemistryAqueous solutionChromatographyChemical engineeringChemistryPhosphatidylcholineSonicationVesicleShear stressZeta potentialElectrolyteColloids and Surfaces A: Physicochemical and Engineering Aspects
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Heterogeneous nucleation of colloidal melts under the influence of shearing fields

2004

Large, oriented single crystals may be obtained from shear melts of colloidal particles after nucleation at the container walls. We are here interested in the processes occurring during the initial phase of their formation. Using different microscopic and scattering techniques we here studied highly charged suspensions of spherical particles, dispersed in low salt or deionized water, in single and double wall confinement, during and after cessation of shear. While the equilibrium phase of our colloidal solids is body centred cubic, the shear induced precursors of heterogeneous nuclei consist of wall based, oriented, registered or freely sliding layers with in plane hexagonal symmetry. Cessa…

Shearing (physics)Materials scienceScatteringNucleationCondensed Matter PhysicsEpitaxyPhysics::Fluid DynamicsCondensed Matter::Soft Condensed MatterCrystalColloidCrystallographyShear (geology)Chemical physicsInitial phaseGeneral Materials ScienceJournal of Physics: Condensed Matter
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Hydroxamate Titanium–Organic Frameworks and the Effect of Siderophore-Type Linkers over Their Photocatalytic Activity

2019

The chemistry of metal–organic frameworks (MOFs) relies on the controlled linking of organic molecules and inorganic secondary building units to assemble an unlimited number of reticular frameworks. However, the design of porous solids with chemical stability still remains limited to carboxylate or azolate groups. There is a timely opportunity to develop new synthetic platforms that make use of unexplored metal binding groups to produce metal–linker joints with hydrolytic stability. Living organisms use siderophores (iron carriers in Greek) to effectively assimilate iron in soluble form. These compounds make use of hard oxo donors as hydroxamate or catecholate groups to coordinate metal Lew…

SiderophoreQuímica organometàl·licachemistry.chemical_elementGeneral ChemistryTitani010402 general chemistry01 natural sciencesBiochemistryCombinatorial chemistryCatalysis0104 chemical sciencesCatalysisMetalchemistry.chemical_compoundColloid and Surface Chemistrychemistryvisual_artvisual_art.visual_art_mediumPhotocatalysisChemical stabilityLewis acids and basesCarboxylateTitaniumJournal of the American Chemical Society
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Protein delivery based on uncoated and chitosan-coated mesoporous silicon microparticles

2011

Mesoporous silicon is a biocompatible, biodegradable material that is receiving increased attention for pharmaceutical applications due to its extensive specific surface. This feature enables to load a variety of drugs in mesoporous silicon devices by simple adsorption-based procedures. In this work, we have addressed the fabrication and characterization of two new mesoporous silicon devices prepared by electrochemistry and intended for protein delivery, namely: (i) mesoporous silicon microparticles and (ii) chitosan-coated mesoporous silicon microparticles. Both carriers were investigated for their capacity to load a therapeutic protein (insulin) and a model antigen (bovine serum albumin) …

SiliconMaterials scienceSiliconBSAchemistry.chemical_elementNanotechnology02 engineering and technology010402 general chemistryPorous silicon01 natural sciencesChitosanchemistry.chemical_compoundDrug Delivery SystemsColloid and Surface ChemistryAdsorptionPorous siliconElectrochemistryAnimalsInsulinPhysical and Theoretical ChemistryBovine serum albuminChitosanbiologyProteintechnology industry and agricultureProteinsSerum Albumin BovineSurfaces and InterfacesGeneral Medicine021001 nanoscience & nanotechnologyequipment and suppliesControlled release0104 chemical sciencesMesoporous organosilicachemistryMicroscopy Electron Scanningbiology.proteinElectrochemical pore formationCattle:Investigación::33 Ciencias tecnológicas::3312 Tecnología de materiales [Materias]0210 nano-technologyMesoporous materialBiotechnology
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Bioprospective of Sorbus aucuparia leaf extract in development of silver and gold nanocolloids

2010

At the present time the bioprospective field is a dynamic area of research. The rapid biosynthesis of silver and gold nanoparticles without using toxic chemicals is reported here. Sorbus aucuparia is omnipresent in Europe. The aqueous leaves extract of the plant were used as reducing agent for the synthesis of silver and gold nanoparticles from their salt solutions. The synthesized nanoparticles were spherical, triangular and hexagonal in shape with an average size of 16 and 18nm for silver and gold, respectively. Different extract quantities, metal concentrations, temperatures and contact times were investigated to find their effect on nanoparticles synthesis. The resulting silver and gold…

SilverMaterials scienceMetal ions in aqueous solutionAnalytical chemistryMetal NanoparticlesNanoparticleSilver nanoparticleMetalAbsorbanceColloid and Surface ChemistryMicroscopy Electron TransmissionX-Ray DiffractionSpectroscopy Fourier Transform InfraredSorbusParticle SizePhysical and Theoretical ChemistryFourier transform infrared spectroscopyPlant ExtractsTemperatureSurfaces and InterfacesGeneral MedicineHydrogen-Ion ConcentrationPlant LeavesReducing AgentsColloidal goldvisual_artvisual_art.visual_art_mediumGoldInductively coupled plasmaCrystallizationOxidation-ReductionBiotechnologyColloids and Surfaces B: Biointerfaces
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Protocol for development of various plants leaves extract in single-pot synthesis of metal nanoparticles

2012

This article is aimed to extend a simple protocol for preparation of various plant leaves extract and their application to green synthesis of the metallic nanoparticles. Five plant leaves extract showed mild reduction and stabilization ability for silver and gold nanoparticles (AgNPs and AuNPs) at room temperature. The particle size range varied from 25 to 42 nm and 21 to 47 nm for AgNPs and AuNPs, respectively. Plant leaves extract-mediated nanoparticles were characterized to confirm the shape, size, crystallinity, and content using different spectroscopic investigations. Differences in stability of nanoparticles at different pH were also measured by zeta potential.

SilverPlant ExtractsChemistryPotentiometric titrationAnalytical chemistryMetal NanoparticlesNanoparticleGreen Chemistry TechnologyOxidation reductionAtomic and Molecular Physics and OpticsAnalytical ChemistryPlant LeavesCrystallinityX-Ray DiffractionColloidal goldZeta potentialGoldParticle sizeParticle SizeMetal nanoparticlesOxidation-ReductionInstrumentationta116SpectroscopyNuclear chemistrySpectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy
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Laser-Ablation-Induced Synthesis of SiO2-Capped Noble Metal Nanoparticles in a Single Step

2010

Here we describe a simple, powerful technique based on the laser ablation of a target immersed in a water solution of a metal salt. With this method, nanoparticles of different metals and alloys can be processed very quickly. Both the target and the salt solution can be chosen to produce metal nanoparticles of different sizes, surface-oxidized nanoparticles (silica-silver, for example), or even more complex structures to be defined by the researcher on one or more steps because the technique combines the advantages of both physical and chemical methods. We have applied this technique to the fabrication of inert silica-metal (silver, gold, and silver-gold) nanoparticles with a strong surface…

SilverSurface PropertiesSilicon dioxideMetal NanoparticlesMineralogyNanoparticleNanotechnologyengineering.materialLaser ablation synthesis in solutionColloidchemistry.chemical_compoundElectrochemistryGeneral Materials ScienceParticle SizeSurface plasmon resonanceSpectroscopyLaser ablationChemistryLasersSurface plasmonSurfaces and InterfacesSilicon DioxideCondensed Matter PhysicsengineeringNoble metalGoldLangmuir
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FT-IR Investigation of the Urea State in AOT Reversed Micelles

2001

Abstract FT-IR spectra of the urea/sodium bis(2-ethylhexyl) sulfosuccinate (AOT)/CCl 4 system as a function of the urea-to-AOT molar ratio ( R urea ) at a fixed AOT concentration ([AOT]=0.1 mol·kg −1 ) have been recorded at 25°C. The experimental data are consistent with the hypothesis that at low R urea values urea is dispersed as monomers among the hydrophilic core of AOT reversed micelles, whereas at R urea >0.13 it is encapsulated as small molecular clusters. These clusters display some departures from the H-bonded structure of the pure solid urea attributable to their small size and to urea–AOT head group interactions. The stretching modes of AOT sulfonate groups are affected by the pr…

SodiumInorganic chemistryAnalytical chemistrychemistry.chemical_elementMicelleSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsBiomaterialschemistry.chemical_compoundColloid and Surface ChemistryMonomerSulfonatechemistryMolar ratioCarbon tetrachlorideUreaFourier transform infrared spectroscopyJournal of Colloid and Interface Science
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