Search results for "ELECTRONICS"

showing 10 items of 4340 documents

High-Quality Metal–Organic Framework Ultrathin Films for Electronically Active Interfaces

2016

Currently available methodologies arguably lack the exquisite control required for producing metal-organic framework (MOF) thin films of sufficient quality for electronic applications. By directing MOF transfer with self-assembled monolayers (SAMs), we achieve very smooth, homogeneous, highly oriented, ultrathin films across millimeter-scale areas that display moderate conductivity likely due to electron hopping. Here, the SAM is key for directing the transfer thereby enlarging the number and nature of the substrates of choice. We have exploited this versatility to evolve from deposition onto standard Si and Au to nonconventional substrates such as ferromagnetic Permalloy. We believe that t…

PermalloyChemistryNanotechnology02 engineering and technologyGeneral ChemistryConductivity010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesBiochemistryCatalysis0104 chemical sciencesColloid and Surface ChemistryFerromagnetismMonolayerDeposition (phase transition)Metal-organic frameworkElectronicsThin film0210 nano-technologyJournal of the American Chemical Society
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Microwave signature for gas sensing: 2005 to present

2015

Abstract We present here the development and the implementation of a technique of gas detection involving a microwave transduction method. The use of low-cost sensors based on microstrip or coplanar structures, adapted to the microwaves domain, allows the sensitive materials deposition under various forms. The purpose of the study is to assess the interest of microwave transduction for gas detection. The choice of the sensitive materials concerns materials widely used in the field of gas sensing: the metal oxides (SnO2 and TiO2) as well as molecular materials like cobalt phthalocyanine (CoPc). In this article we shall apply to explain the principles of the microwave transduction before appr…

PermittivityAtmospheric ScienceMaterials sciencebusiness.industryGeography Planning and DevelopmentCobalt phthalocyanineEnvironmental Science (miscellaneous)MicrostripUrban StudiesMicrowave signatureElectronic engineeringOptoelectronicsMolecular materialsbusinessMicrowaveUrban Climate
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Structure and properties of epitaxial ferroelectric PbLu0.5Nb0.5O3thin films

2001

Abstract Epitaxial thin film heterostructures of PbLu0.5Nb0.5O3 (PLuN) and La0.5Sr0.5CoO3 (LSCO) were deposited by in situ pulsed laser ablation onto MgO and LaAlO3 (100) substrates. The formation of crystalline phases, epitaxy, film-electrode-substrate orientation relationships, crystal perfection and chemical order were studied by x-ray diffraction. The structural properties were found to depend on the deposition conditions and on the substrate. The perovskite PLuN films were pseudocubic and epitaxial, with (001) planes parallel to the substrate surface. At room temperature, Au/PLuN/LSCO capacitors exhibited ferroelectric behavior and zero-field dielectric permittivity about e ≅ 210–260, …

PermittivityCrystalMaterials scienceCondensed matter physicsSubstrate (electronics)Thin filmCondensed Matter PhysicsEpitaxyFerroelectricityElectronic Optical and Magnetic MaterialsPerovskite (structure)Pulsed laser depositionFerroelectrics
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Imprinting the complex dielectric permittivity of liquids into the spintronic terahertz emission

2021

We report an approach in time-domain terahertz (THz) spectroscopy for measuring the dielectric response of liquids based on inherent properties of spintronic THz emitters (STEs). The THz electric field radiated from the STE is inversely proportional to the sum of the complex refractive indices of the media surrounding the thin metallic stack of the STE and the stack's conductivity. We demonstrate that by bringing a liquid in contact with the emitter, its complex refractive index and accordingly its dielectric response are imprinted into the radiated electromagnetic field from the emitter. We use water as the test liquid and ascertain its dielectric loss and permittivity in the range of ∼0.…

PermittivityElectromagnetic fieldMaterials sciencePhysics and Astronomy (miscellaneous)business.industryTerahertz radiation530 PhysicsPhysics::Optics530 PhysikStack (abstract data type)Electric fieldOptoelectronicsDielectric lossbusinessRefractive indexCommon emitter
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Optically assisted trapping with high-permittivity dielectric rings: Towards optical aerosol filtration

2016

Controlling the transport, trapping, and filtering of nanoparticles is important for many applications. By virtue of their weak response to gravity and their thermal motion, various physical mechanisms can be exploited for such operations on nanoparticles. However, the manipulation based on optical forces is potentially most appealing since it constitutes a highly deterministic approach. Plasmonic nanostructures have been suggested for this purpose, but they possess the disadvantages of locally generating heat and trapping the nanoparticles directly on surface. Here, we propose the use of dielectric rings made of high permittivity materials for trapping nanoparticles. Thanks to their abilit…

PermittivityMaterials sciencePhysics and Astronomy (miscellaneous)Field (physics)[SPI.NANO] Engineering Sciences [physics]/Micro and nanotechnologies/MicroelectronicsFOS: Physical sciencesNanoparticlePhysics::Optics02 engineering and technologyTrappingDielectric[SPI.MAT] Engineering Sciences [physics]/Materials01 natural scienceslaw.inventionlaw0103 physical sciences010306 general physicsFiltration[SPI.ACOU] Engineering Sciences [physics]/Acoustics [physics.class-ph]Condensed Matter - Materials Sciencebusiness.industryMaterials Science (cond-mat.mtrl-sci)021001 nanoscience & nanotechnologyAerosolOptoelectronics0210 nano-technologyPlasmonic nanostructuresbusinessOptics (physics.optics)Physics - Optics
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Thermal and conductivity dependence of GaAs based acoustic biosensors

2016

GaAs BAW sensors using shear acoustic waves were developed for biological detection and quantification. The sensor consists of a 50–350µm thick membrane where thickness shear acoustic waves were produced with a lateral field excitation (LFE). The LFE electrode arrangement is located on one side of the membrane. The other side is dedicated for proteins or cells capture through a bio-functionalized interface formed on the GaAs surface. Sensitivity of this type of sensor had been evaluated by modeling to 0.1ng.Hz−1. Detection needs to be done in liquid environment with complex biological analytes such as blood or plasma. These analytes can inevitably induce temperature and surface charge varia…

PermittivityMaterials sciencebusiness.industry02 engineering and technologyAcoustic waveSubstrate (electronics)Conductivity021001 nanoscience & nanotechnology01 natural sciences010309 optics0103 physical sciencesOptoelectronicsSurface chargeThin film0210 nano-technologybusinessElectrical impedanceExcitation2016 IEEE International Ultrasonics Symposium (IUS)
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Structural and in depth characterization of newly designed conducting/insulating TiN O /TiO2 multilayers obtained by one step LP-MOCVD growth

2001

Abstract TiNxOy/TiO2 multilayers have been grown by LP-MOCVD using titanium isopropoxide (TIP) precursor during the whole growth, but with an ammonia flow interrupted for the TiO2 layers. The one step growth process used to grow these structures allowed to stack the conducting and insulating layers without any growth breakdown. SIMS and TEM analyses showed the presence of an alternated insulating/conducting layers structure. Moreover, electrical measurements allowed to measure the dielectric part of insulating TiO2 stacked in these structures, whose permittivity was found to be about 80 for a MOS structure. Thus, such multilayers may lead to very promising applications in the microelectroni…

PermittivityMaterials sciencebusiness.industryAnalytical chemistryGeneral Physics and AstronomySurfaces and InterfacesGeneral ChemistryDielectricCondensed Matter PhysicsSurfaces Coatings and FilmsSecondary ion mass spectrometrychemistry.chemical_compoundchemistryMicroelectronicsOptoelectronicsElectrical measurementsMetalorganic vapour phase epitaxyThin filmTitanium isopropoxidebusinessApplied Surface Science
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Setup for Characterization of the Non-Linear Electric Susceptibility in the Microwave Range Applied to a Glass Ceramic

2019

A resonator method exciting eigenresonances of three coupled cylindrical dielectric resonators allows characterizing the non-linear response of low loss and high permittivity materials at frequencies of about 1 GHz. To reach the necessary sensitivity for dielectric non-linearities, the setup ensures that the measured intermodulation can be ascribed to the material under test while all other intermodulation sources are excluded. Electric field amplitudes of several V/mm are obtained at an input power of 100 W. The setup was used to characterize the third order non-linear susceptibility of a glass ceramic.

PermittivityMaterials sciencebusiness.industryElectric susceptibilityDielectricMicrowave transmissionResonatorElectric fieldvisual_artvisual_art.visual_art_mediumOptoelectronicsCeramicbusinessIntermodulation2019 IEEE MTT-S International Microwave Workshop Series on Advanced Materials and Processes for RF and THz Applications (IMWS-AMP)
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Pulsed laser deposition of relaxor ferroelectric films

1998

Heterostructures of perovskite relaxor ferroelectric (RFE) thin films onto La 0.5 Sr 0.5 CoO bottom electrode layers were grown by pulsed laser deposition on MgO(100) crystal substrates. The films were highly oriented, with (h00) planes parallel to the substrate surface, and demonstrated good dielectric and ferroelectric quality at room temperature. The studies of the dielectric properties of the films over the frequency range of 20 Hz....100 kHz and over the temperature range of 0...350°C revealed relaxor type behavior in the films. A diffuse ferroelectric phase transition and a shift of the maximum dielectric permittivity towards higher temperatures with increasing frequency were observed…

PermittivityMaterials sciencebusiness.industryGeneral Physics and AstronomyMineralogyDielectricAtmospheric temperature rangeFerroelectricityPulsed laser depositionOptoelectronicsDielectric lossThin filmbusinessPerovskite (structure)Le Journal de Physique IV
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Noninvasive monitoring of polymer curing reactions by dielectrometry

2011

A microwave sensor system for the noninvasive monitoring of the curing process of a thermoset material placed inside a metallic mold is described. The microwave sensor is designed as an open-ended coaxial resonator with a curved surface adapted to the mold inner shape. The analysis of the microwave resonator comprises a recently developed method for deembedding the effect of coupling network in overcoupled resonators, so the range of permitted measurements encompass both low and high dielectric losses of polymeric materials. Results show that noninvasive, continuous monitoring of the microwave dielectric properties of the thermoset material can be performed in real time, allowing one to che…

PermittivityPolymeric materialMaterials scienceMicrowave sensorsPlasticityPolymersDe-embeddingInitial conditionsCoupling networkThermosetting polymerDielectricMicrowave devicesDielectric lossesMoldsDielectric materialsContinuous monitoringResonatorCoaxial resonatorsMetallic moldMicrowave dielectric propertiesTEORIA DE LA SEÑAL Y COMUNICACIONESCuringResonatorsElectrical and Electronic EngineeringMicrowavesInstrumentationCuring (chemistry)Cure processNon-invasive monitoringbusiness.industryDielectrometryCuring processCurved surfacesThermosetsMicrowave resonatorsReal timeElastomersThermoset materialsProcess monitoringCuring reactionsOptoelectronicsMaterials processingProcess controlDielectric lossCoaxialbusinessPlasticsMicrowave
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