Search results for "Microstructure"

showing 10 items of 707 documents

Chalcogenide Microstructured Fibers for Infrared Systems, Elaboration, Modelization, and Characterization

2009

special issue " Fiber Optic Research in France " (Part III of III); International audience; Chalcogenide fibers present numerous possible applications in the IR field. For many applications, single mode fibers must be obtained. An original way is the realization of microstructured optical fibers (MOFs) with solid core. These fibers present a broad range of optical properties thanks to the high number of freedom degrees of their geometrical structure. In this context, we have developed MOFs for near and mid IR transmission with different geometries and properties such as multimode or endless single-mode operation, small or large mode area fibers. We have also investigated numerically the mai…

Materials scienceOptical fiberChalcogenideGlass fiberChalcogenide glassPhysics::OpticsContext (language use)02 engineering and technology01 natural scienceslaw.invention010309 opticschemistry.chemical_compoundchalcogenide glassOpticslaw0103 physical sciencesnonlinear materials[PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics]Multi-mode optical fiber[ PHYS.PHYS.PHYS-OPTICS ] Physics [physics]/Physics [physics]/Optics [physics.optics]microstructured fibersbusiness.industrySingle-mode optical fibersingle-mode fibermodeling021001 nanoscience & nanotechnologyAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsCharacterization (materials science)infrared glasseschemistryOptoelectronicsfiber drawing0210 nano-technologybusiness
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Optical aging behaviour naturally induced on As_2S_3 microstructured optical fibres

2014

The efficiency and the stability of As2S3 microstructured optical fibres (MOFs) are limited by the shift of their optical properties that occurs over time due to a naturally induced aging process. Such sensitivity becomes more crucial for long optical path. Among the variety of fibre designs, the MOFs are developed for promising photonics applications such as supercontinuum generation for example. In the present work, we carried out an extensive aging study on As2S3 chalcogenide MOFs in ambient atmosphere. The evolution of the fibre transmission spectrum has been studied with regards to exposure time. The analysis of the transmission line profile was performed in terms of different spectral…

Materials scienceOptical fiberbusiness.industryChalcogenideAttenuationMicrostructured optical fiberMolar absorptivityElectronic Optical and Magnetic MaterialsSupercontinuumlaw.inventionchemistry.chemical_compoundOpticsOptical pathchemistrylawOptoelectronicsPhotonicsbusinessOptical Materials Express
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Ultrahigh-birefringent squeezed lattice photonic crystal fiber with rotated elliptical air holes.

2010

We report an experimental realization of a highly birefringent photonic crystal fiber as a result of compressing a regular hexagonal structure. The experimental measurements estimate a group birefringence of approximately 5.5x10(-3) at 1550 nm in good agreement with the numerical results. We study the influence of compressing the regular structure at different directions and magnifications, obtaining a method to realistically enhance the phase birefringence while moderating the group birefringence.

Materials scienceOpticsBirefringencebusiness.industryDispersion-shifted fiberPolarization-maintaining optical fiberMicrostructured optical fiberPlastic optical fiberbusinessGraded-index fiberAtomic and Molecular Physics and OpticsPhotonic crystalPhotonic-crystal fiberOptics letters
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One-step synthesis and deposition of ZnFe2O4 related composite films via SPPS route for photodegradation application

2019

Binary spinel-type metal oxides (AB2O4) related materials, including ferrites (AFe2O4), are attractive photocatalysts thanks to their excellent visible light response for the photodegradation of organic pollutants. Currently, these materials are synthesized via conventional chemical routes suffering from long preparation duration and multistep. Moreover, the photocatalysts are obtained as nano-powders from conventional chemical routes would introduce another drawback for their recycling and reuse. From an industrial perspective, it is desirable to develop an efficient and facile synthesis process to produce photocatalysts in a non-dispersible form. Herein, we demonstrate that the solution p…

Materials scienceOxideBioengineering02 engineering and technology010402 general chemistry01 natural sciencessymbols.namesakeSolution precursor plasma spraychemistry.chemical_compound[CHIM]Chemical SciencesGeneral Materials ScienceElectrical and Electronic EngineeringPhotodegradationComputingMilieux_MISCELLANEOUSMechanical Engineering[CHIM.MATE]Chemical Sciences/Material chemistryGeneral Chemistry021001 nanoscience & nanotechnologyMicrostructure0104 chemical sciencesZinc ferriteChemical engineeringchemistry13. Climate actionMechanics of MaterialsPhotocatalysissymbols0210 nano-technologyRaman spectroscopyVisible spectrumNanotechnology
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Tunable morphologies of ZnO films via the solution precursor plasma spray process for improved photocatalytic degradation performance

2018

Abstract The Solution Precursor Plasma Spray (SPPS) process is a novel, versatile and one-step route for building photocatalytic films. Herein, the influence of the precursor solution composition on the microstructure and on the properties of ZnO films prepared via the SPPS process was studied. Nanostructured ZnO particles (i.e. nanorods (NRs) and nanowires (NWs)) were obtained by using a solution of pure Zn(OAc)2 rather than pure Zn(NO3)2. Upon adding urea to the Zn(NO3)2 solution, NRs structured ZnO films were formed as well. The addition of acetic acid into the Zn(OAc)2 solution led to a damage of the nanostructured morphologies likely due to the inhibition of the zinc-containing cluster…

Materials scienceOxideGeneral Physics and Astronomy02 engineering and technology[CHIM.INOR]Chemical Sciences/Inorganic chemistry010402 general chemistry01 natural sciencesMetalSolution precursor plasma spraychemistry.chemical_compoundPhotodegradationComputingMilieux_MISCELLANEOUSSurfaces and InterfacesGeneral Chemistry[CHIM.MATE]Chemical Sciences/Material chemistry021001 nanoscience & nanotechnologyCondensed Matter PhysicsMicrostructure0104 chemical sciencesSurfaces Coatings and FilmschemistryChemical engineeringvisual_artPhotocatalysisvisual_art.visual_art_mediumNanorod0210 nano-technologyVisible spectrum
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Properties of ZnO coatings obtained by mechanoactivated oxidation

2009

In this work a new method based on the mechanoactivated oxidation has been applied for obtaining thin nanostructured transparent ZnO coatings on glass. Zn has been transferred onto a glass substrate at room temperature using a quickly rotating steel wire brush. Afterwards by subsequent annealing it is modified into a transparent ZnO coating. The temperature range in which formation of the needle-like (whiskers) structure and transition to the fine-grained structure occurs has been determined. The interrelation between physical properties and the change of microstructure of the ZnO coatings has been shown.

Materials sciencePhotoluminescenceNanostructureAnnealing (metallurgy)WhiskersMetallurgyMetals and AlloysSurfaces and InterfacesAtmospheric temperature rangeengineering.materialMicrostructureIndentation hardnessSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsCoatingMaterials ChemistryengineeringComposite materialThin Solid Films
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Powder metallurgy processing and deformation characteristics of bulk multimodal nickel

2014

cited By 7; International audience; Spark plasma sintering was used to process bulk nickel samples from a blend of three powder types. The resulting multimodal microstructure was made of coarse (average size ∼ 135 μm) spherical microcrystalline entities (the core) surrounded by a fine-grained matrix (average grain size ∼ 1.5 μm) or a thick rim (the shell) distinguishable from the matrix. Tensile tests revealed yield strength of ∼ 470 MPa that was accompanied by limited ductility (∼ 2.8% plastic strain). Microstructure observation after testing showed debonding at interfaces between the matrix and the coarse entities, but in many instances, shallow dimples within the rim were observed indica…

Materials sciencePlasticityEBSDFlow stressDeformation CharacteristicsNickelPowder metallurgyPowder metallurgyGeneral Materials ScienceIn-situ TEMMicrostructureMicrostructure observationCrack tips[PHYS]Physics [physics][ PHYS ] Physics [physics]Deformation mechanismMechanical EngineeringMetallurgySpark plasma sinteringNickel powder metallurgyCondensed Matter PhysicsMicrostructureGrain sizeDeformationIn-situ transmission electron microscopiesDeformation mechanismMechanics of MaterialsMulti-modalGrain boundariesGrain boundaryPowder metallurgy processingDeformation (engineering)DislocationTensile testingTransmission electron microscopy
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Development of a three-dimensional cell culture system based on microfluidics for nuclear magnetic resonance and optical monitoring

2014

A new microfluidic cell culture device compatible with real-time nuclear magnetic resonance (NMR) is presented here. The intended application is the long-term monitoring of 3D cell cultures by several techniques. The system has been designed to fit inside commercially available NMR equipment to obtain maximum readout resolution when working with small samples. Moreover, the microfluidic device integrates a fibre-optic-based sensor to monitor parameters such as oxygen, pH, or temperature during NMR monitoring, and it also allows the use of optical microscopy techniques such as confocal fluorescence microscopy. This manuscript reports the initial trials culturing neurospheres inside the micro…

Materials sciencePlatformsConfocalMicrofluidicsBiomedical Engineeringlaw.inventionColloid and Surface ChemistryNuclear magnetic resonanceOptical microscopelawIn-vivoNeurosphereFluorescence microscopeGold nanoparticlesGeneral Materials ScienceMicrostructureFluid Flow and Transfer ProcessesFluidsTemperature controlMR MicroscopyOn-a-chipNuclear magnetic resonance spectroscopyQuímicaCondensed Matter PhysicsSingle neuronsPerfusionMammalian-CellsColloidal goldNMR-SPECTROSCOPYImatges tridimensionals en biologiaRegular Articles
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The combined influence of grain size distribution and dislocation density on hardness of interstitial free steel

2020

Abstract Understanding the relationship between microstructure features and mechanical properties is of great significance for the improvement and specific adjustment of steel properties. The relationship between mean grain size and yield strength is established by the well-known Hall-Petch equation. But due to the complexity of the grain configuration within materials, considering only the mean value is unlikely to give a complete representation of the mechanical behavior. The classical Taylor equation is often used to account for the effect of dislocation density, but not thoroughly tested in combination with grain size influence. In the present study, systematic heat treatment routes and…

Materials sciencePolymers and PlasticsAnnealing (metallurgy)02 engineering and technology010402 general chemistryGrain size distribution01 natural scienceslaw.inventionCondensed Matter::Materials ScienceOptical microscopelawHardnessMaterials ChemistryDislocation densityComposite materialMechanical EngineeringMean valueMetals and Alloys021001 nanoscience & nanotechnologyMicrostructureGrain size0104 chemical sciencesMechanics of MaterialsParticle-size distributionCeramics and CompositesKurtosis0210 nano-technologyInterstitial free steel
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Twin coarsening in CdTe(111) films grown on GaAs(100)

2006

Abstract We present a scanning force microscopy study of twin coarsening in CdTe(1 1 1) films grown on GaAs(1 0 0). Two types of CdTe(1 1 1) twins grow epitaxially and with equal probability on the long-range wavy surface structure developed by previous in situ annealing of the GaAs(1 0 0) substrate. Due to this initial substrate wavy structure, the grain coarsening during film growth leads to a quasi-one-dimensional rippled pattern. We propose a coarsening mechanism between twins driven by the formation of stacking faults.

Materials sciencePolymers and PlasticsCondensed matter physicsAnnealing (metallurgy)business.industryMetals and AlloysStackingEpitaxyMicrostructureCadmium telluride photovoltaicsElectronic Optical and Magnetic MaterialsCrystallographySemiconductorCeramics and CompositesCrystal twinningbusinessStacking faultActa Materialia
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