Search results for "Lamellar phase"

showing 5 items of 5 documents

Preparation of Nd:YAG Nanopowder in a Confined Environment

2007

Nanopowder of yttrium aluminum garnet (YAG, Y3Al5O12) doped with neodymium ions (Nd:YAG) was prepared in the water/cetyltrimethylammonium bromide/1-butanol/n-heptane system. Aluminum, yttrium, and neodymium nitrates were used as starting materials, and ammonia was used as a precipitating agent. Coprecipitate hydroxide precursors where thermally treated at 900 degrees C to achieve the garnet phase. The starting system with and without reactants was characterized by means of the small-angle neutron scattering technique. The system, without reactants, is constituted by a bicontinuous structure laying near the borderline with the lamellar phase region. The introduction of nitrates stabilizes th…

nanopowderswide angle x-ray scatteringAnalytical chemistrychemistry.chemical_elementMineralogyNeodymiummicroemulsionsYAG [Nd]Lamellar phasePhase (matter)transmission electron microscopyElectrochemistryGeneral Materials ScienceMicroemulsionYAG; nanopowders; syntheisi in confined environment; microemulsions; wide angle x-ray scattering; transmission electron microscopy; photoluminescence spectroscopy [Nd]Wide-angle X-ray scatteringSpectroscopySurfaces and InterfacesYttriumCondensed Matter PhysicsSmall-angle neutron scatteringchemistrysyntheisi in confined environmentphotoluminescence spectroscopyTransmission electron microscopyNdYAG microemulsion synthesis in confined environmentLangmuir
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Copolymer Melts in Disordered Media

1996

The symmetric AB block copolymer melt in a gel matrix with preferential adsorption of A monomers on the gel gives an example of a random-field system, which is described near the point of the microphase separation transition by the random field Landau-Brazovskii Hamiltonian. By using the technique of the 2-nd Legendre transform, the phase diagram of the system is calculated. We found that the preferential adsorption of the copolymer on the gel results in two effects: a) It decreases the temperature of the first order phase transition between disordered and ordered phase. b) There exists a region on the phase diagram at some small but finite value of the adsorption energy in which the replic…

Phase transitionSpinodalRandom fieldMaterials scienceCondensed matter physicsGeneral EngineeringThermodynamicsStatistical and Nonlinear PhysicsClassical XY modelCondensed Matter::Soft Condensed Mattersymbols.namesakeLamellar phasesymbolsSymmetry breakingHamiltonian (quantum mechanics)Phase diagramJournal de Physique I
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Synthesis of yttrium aluminum garnet nanoparticles in confined environment, and their characterization

2016

Abstract Nanopowders of yttrium aluminum garnet (YAG, Y3Al5O12) have been prepared by thermal treatment of hydroxides obtained by synthesis in a confined environment constituted by water/Cetyltrimethylammonium bromide (CTAB)/1-butanol/n-heptane. The phase behavior of the above system has been investigated on varying the water/CTAB molar ratio (R) at constant 1-butanol/CTAB and heptane/CTAB molar ratio. The dispersed aqueous phases were constituted by solutions of ammonia and of yttrium and aluminum nitrates, respectively. Measures of Kinematic Viscosity, Electrical Conductivity and Small Angle X-ray Scattering have been carried out. It was found that, on increasing the ammonia solution cont…

Aqueous solutionMaterials scienceYAG nanopowderMineralogyNanoparticlechemistry.chemical_elementSAXS02 engineering and technologyYttrium010402 general chemistry021001 nanoscience & nanotechnologyMicroemulsion01 natural sciences0104 chemical scienceslaw.inventionColloid and Surface ChemistrychemistryChemical engineeringLamellar phaselawPhase (matter)CalcinationLamellar structureMicroemulsion0210 nano-technologyColloids and Surfaces A: Physicochemical and Engineering Aspects
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Development and characterization of liposomes containing glycols as carriers for diclofenac

2009

® Propylene glycol Permeation enhancer vesicles abstract This paper focuses on the preparation and characterization of new, stable phospholipid formulations as carriers for dermal delivery of diclofenac (DCF). To prepare these vesicles two water miscible permeation enhancers (PE) with glycol group: diethyleneglycol monoethyl ether (Transcutol ® , Trc) and propylene glycol (PG), were added at different concentrations (10%, 20%, 30%, 40%, 50%) during the preparation of diclofenac loaded soy lecithin (SL) liposomes. We added Transcutol ® or propylene glycol to the hydrophilic phase in order to obtain new systems able to enhance the skin delivery of diclofenac thanks to the synergic effect of g…

Liposomechemistry.chemical_compoundColloid and Surface ChemistryChromatographyLamellar phaseChemistryVesiclePhosphatidylcholineZeta potentialPhospholipidPermeationApparent viscosityColloids and Surfaces A: Physicochemical and Engineering Aspects
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Influence of the electrical interface properties on the rheological behavior of sonicated soy lecithin dispersions

2006

A significant effect, on the rheological behavior, due to the electrical properties of vesicles formed from concentrated soy lecithin dispersions have been studied in this work. The rheopectic behavior of concentrated soy lecithin dispersions (120, 150, 180, 210 and 240 g L−1) prepared by swelling–light sonication–freezing–unfreezing procedure is studied and it is specially emphasized on the transition under steady shear from lamellar phase of planar sheets to closed structures as multilamellar vesicles. Samples have been exposed to a different number of sonication cycles (from 0 to 100) and the changes in the hysteresis loop area, the apparent viscosity and the electrophoretic mobility hav…

Surface PropertiesSonicationAnalytical chemistryLECITINAVESICULASVESICLESBiomaterialsSonicationViscosityColloid and Surface ChemistryRHEOLOGYLamellar phaseRheologyZeta potentialLECITHINVISCOSIDADViscosityChemistryVesicleApparent viscositySurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsChemical engineeringVolume fractionPhosphatidylcholinesSoybeansRheologyVISCOSITYJournal of Colloid and Interface Science
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