Search results for "Lamellar structure"

showing 10 items of 85 documents

Microemulsions: Phase transitions and their dynamics

2007

By differential scanning microcalorimetry we investigate temperature-induced phase transitions and their dynamics in mixtures of water, oil and a non-ionic surfactant. Special emphasis is on an investigation of the transition from a lamellar to a microemulsion phase and on the emulsification failure. The first-order phase transition from a lamellar to a microemulsion phase leads to heat changes up to 1k BT per surfactant molecule. These large values for the latent heat are quantitatively described by an interfacial model which takes into account the temperature dependence of the spontaneous curvature.

Isothermal microcalorimetryQuantum phase transitionPhase transitionMaterials sciencePulmonary surfactantPhase (matter)ThermodynamicsLamellar structureMicroemulsionCalorimetry
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Comparative study of the three attachment mechanisms of diplectanid monogeneans

2011

Abstract One of the main characteristics of the monogenean family Diplectanidae Monticelli, 1903 is their complex haptor formed by 2 pairs of hooks, transversal bars, 14 peripheral marginal hooks, and accessory adhesive organ (lamellodisc or squamodisc) that can be present or absent. Sub-family Lamellodiscinae Oliver, 1969 presents one or two lamellodiscs, formed by several overlapped lamellar esclerites (lamellae) which are piled up. Species like Furnestina echeneis only have one large ventral lamellodisc. This organ function has been categorized in different ways (i.e. accessory adhesive organ, supplementary or compensating disc or sucker), although its real mode of operation and function…

Lamella (surface anatomy)biologySuckerDiplectanidaeHaptorLamellodiscusDiplectanum aequansLamellar structureAnatomyAquatic Sciencebiology.organism_classificationMonogeneaAquaculture
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Langmuir−Blodgett Films of a Mo-Blue Nanoring [Mo142O429H10(H2O)49(CH3CO2)5(CH3CH2CO2)]30- (Mo142) by the Semiamphiphilic Method

2007

Langmuir monolayers and LB films of the ring-shaped mixed-valence polyoxomolybdate [Mo142O429H10(H2O)49(CH3CO2)5(CH3CH2CO2)]30- (Mo142) dissolved in the aqueous subphase have been successfully fabricated by using the adsorption properties of a DODA monolayer. Infrared and ultraviolet−visible spectroscopy of the LB films indicates that Mo142 and DODA molecules are incorporated within these LB films. X-ray reflectivity experiments indicate that the LB films exhibit a well-defined lamellar structure formed by bilayers of DODA molecules alternating with monolayers of Mo142. Using behenic acid-modified hydrophobic quartz substrate is critical for the formation of the well-defined lamellar struct…

LangmuirStereochemistryBilayerSurfaces and InterfacesCondensed Matter PhysicsLangmuir–Blodgett filmchemistry.chemical_compoundCrystallographychemistryMonolayerSaturated fatty acidElectrochemistryGeneral Materials ScienceLamellar structureBehenic acidSpectroscopyNanoringLangmuir
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Synthesis and cation-exchange properties of a bis-zwitterionic lamellar hybrid material

2008

The synthesis of a bis-zwitterionic lamellar hybrid material containing ammonium carboxylate groups is described. Cation-exchange properties of this material towards transition metal and lanthanide ions were studied as well as the regeneration and reuse of the material.

LanthanideseparationInorganic chemistry02 engineering and technology010402 general chemistry01 natural scienceschemistry.chemical_compoundTransition metalPolymer chemistryhybrid materialsMaterials ChemistryLamellar structureCarboxylateComputingMilieux_MISCELLANEOUSIon exchangeGeneral Chemistryself assembly[CHIM.MATE]Chemical Sciences/Material chemistry021001 nanoscience & nanotechnology0104 chemical scienceschemistryZwitterion[ CHIM.MATE ] Chemical Sciences/Material chemistrySelf-assembly0210 nano-technologyHybrid material
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Small Angle Neutron Scattering, X-ray Diffraction, Differential Scanning Calorimetry, and Thermogravimetry Studies to Characterize the Properties of …

2009

Nanocomposites based on laponite RD and (ethylene oxide)98(propylene oxide)67(ethylene oxide)98 (F127)triblock copolymer or poly(ethylene) glycol 2000 (PEG2000) were prepared by using the melting method. Small-angle neutron scattering and the X-ray diffraction experiments provided insights into the organization of the laponite RD dispersed in the macromolecular matrix over a wide length scale. SANS data analysis by means of a fractal law evidenced the formation of clusters of laponite RD at long correlation distance. The single laponite RD particles and the lamellar structure of F127 were described in the shorter length scale. Finally, the crystalline structure of the macromolecule was obse…

Length scaleTGAMaterials scienceEthylene oxidenanocompositepoly(ethylene oxide)poly(propylene oxide)poly(ethylene oxide)SANSXRDAnalytical chemistrypoly(ethylene)glycol 2000laponite RDNeutron scatteringSmall-angle neutron scatteringSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsDSCThermogravimetrychemistry.chemical_compoundGeneral EnergyDifferential scanning calorimetrychemistryX-ray crystallographyLamellar structurePhysical and Theoretical Chemistry
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Small-angle x-ray scattering experiments for investigating the validity of the two-phase model

1973

A New method for evaluating SAXS curves of polymer samples with lamellar structure is applied to two typical scattering curves measured with a solution-crystallized linear polyethylene and a melt-crystallized branched polyethylene respectively. The method permits a rigorous check of the validity of the two-phase model and yields, without additional measurement, the volume fractions of the two phases and the difference in their densities. The densities can than be obtained by measuring the overall density of the sample. The results are: ρc = 0.996 g/cm3,ρa = 0.854 g/cm3, wa = 0.20 for the solution-crystallized sample; ρc = 0.967 g/cm3,ρa = 0.850 g/cm3, wa = 0.36 for the melt-crystallized sam…

Linear low-density polyethylenechemistry.chemical_classificationchemistry.chemical_compoundMaterials scienceVolume (thermodynamics)chemistryScatteringSmall-angle X-ray scatteringAnalytical chemistryPhase modelLamellar structurePolymerPolyethyleneJournal of Polymer Science Part A-2: Polymer Physics
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Role of the Microstructure on the High Temperature Oxidation Properties of the Intermetallic Compound NbAl<sub>3</sub>

2001

The influence of the NbAl 3 microstructure on its oxidation mechanism was investigated in air under atmospheric pressure over the temperature range 500-1080°C. Different processing techniques as induction melting and mechanically-activated annealing processes (M2AP) were used to produce the intermetallic compound NbAl 3 . A protective external alumina scale grew only on Al-enriched NbAl 3 between 700 and 1080°C. Stoichiometric NbAl 3 exhibited the pesting phenomenon between 550-900°C, whereas a non protective lamellar oxide scale formed above 900°C. The proposed oxidation mechanism explains these observations which are in agreement with the oxidation study of powders with different crystall…

Materials scienceAnnealing (metallurgy)Mechanical EngineeringHigh-temperature corrosionMetallurgyIntermetallicOxideAtmospheric temperature rangeCondensed Matter PhysicsMicrostructurechemistry.chemical_compoundchemistryChemical engineeringMechanics of MaterialsGeneral Materials ScienceLamellar structureCrystalliteMaterials Science Forum
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Hierarchical Self-Assembly of Halogen-Bonded Block Copolymer Complexes into Upright Cylindrical Domains

2017

Summary Self-assembly of block copolymers into well-defined, ordered arrangements of chemically distinct domains is a reliable strategy for preparing tailored nanostructures. Microphase separation results from the system, minimizing repulsive interactions between dissimilar blocks and maximizing attractive interactions between similar blocks. Supramolecular methods have also achieved this separation by introducing small-molecule additives binding specifically to one block by noncovalent interactions. Here, we use halogen bonding as a supramolecular tool that directs the hierarchical self-assembly of low-molecular-weight perfluorinated molecules and diblock copolymers. Microphase separation …

Materials scienceBlock copolymerGeneral Chemical Engineering116 Chemical sciencesSupramolecular chemistryNanotechnologyblock copolymer02 engineering and technologyhierarchical self-assembly010402 general chemistry01 natural sciencesBiochemistryMicelleArticleSDG9: Industry innovation and infrastructuresupramolecular complexesMaterials ChemistryCopolymerEnvironmental ChemistryNon-covalent interactionsMoleculeLamellar structureta116chemistry.chemical_classificationHalogen bondta114Biochemistry (medical)General Chemistry021001 nanoscience & nanotechnology0104 chemical sciencesblock copolymerschemistryChemical engineeringIndustry innovation and infrastructure [SDG9]nanofabricationhalogen bondSettore CHIM/07 - Fondamenti Chimici Delle TecnologieSelf-assembly0210 nano-technology
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DIRECT NUMERICAL SIMULATION OF MOTION OF FERROMAGNETIC PARTICLES IN MAGNETORHEOLOGICAL SUSPENSION

2008

ABSTRACT Results simulation of magnetorheological suspension at particle level are reported. The present approach accounts for a better description of hydrodynamic interaction between close spheres. Development of lamellar structures similar to those obtained by other researchers in Poiseuille flow is observed in shear flow. Studies of single layer lamellar structures reveal presence of short chains and more complex aggregates.

Materials scienceDirect numerical simulationMechanicsCondensed Matter PhysicsHagen–Poiseuille equationElectronic Optical and Magnetic MaterialsControl and Systems EngineeringMagnetorheological fluidMaterials ChemistryCeramics and CompositesParticleLamellar structureSPHERESElectrical and Electronic EngineeringShear flowSuspension (vehicle)Integrated Ferroelectrics
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Scanning Probe Microscopy Study of the Metal-Rich Layered Chalcogenides TaM2Te2 (M = Co, Ni)

1998

The compounds TaNi2Te2 and TaCo2Te2 have been examined by scanning tunneling and atomic force microscopy. The title phases crystallize in layered structures with metal slabs sandwiched by tellurium atoms. Scanning probe microscope images of the surfaces of these materials arise from the surface tellurium atoms anddepending on the experimental conditionscan show very different features. The images have been simulated through surface charge densities calculated within the Extended Huckel and LMTO frameworks.

Materials scienceGeneral Chemical EngineeringAnalytical chemistrychemistry.chemical_elementCharge densityGeneral ChemistryMicrostructureScanning probe microscopychemistryMicroscopyPhysics::Atomic and Molecular ClustersMaterials ChemistryLamellar structurePhysics::Atomic PhysicsSurface chargeTelluriumElectronic band structureChemistry of Materials
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