Search results for "RADIATION"

showing 10 items of 5298 documents

Luminescence of cerium doped YAG nanopowders

2007

Abstract Cerium doped YAG nanopowders with grain size ∼ 20 nm have been synthesized by co-precipitation method. Time-resolved luminescence characteristics have been studied. The results obtained have been compared with the luminescence characteristics for well-studied YAG single crystals. In contrast to cerium doped YAG crystals, cerium doped nanocrystal does not reveal luminescence bands due to antisite defects under electron beam pulse and X-ray excitations at 80–300 K temperature range. It was detected that decay kinetic of Ce 3 + related emission in the nanocrystal can be approximated by two exponents with time constants ∼ 9 and ∼ 47 ns at 290 K. It is faster than single exponential dec…

RadiationMaterials scienceDopingAnalytical chemistrychemistry.chemical_elementMineralogyYttriumAtmospheric temperature rangeGrain sizeCeriumNanocrystalchemistryLuminescenceInstrumentationSurface statesRadiation Measurements
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Peculiarities of luminescent properties of cerium doped YAG transparent nanoceramics

2010

Abstract Optical and luminescence properties of transparent nanosized cerium doped Y 3 Al 5 O 12 (YAG:Ce) ceramics have been studied. YAG:Ce nanoceramics were obtained by means of low temperature and high pressure (LTHP) sintering method. Nanoceramic samples were sintered in the 2–8 GPa pressure range, whereas Ce 3+ concentration was varied in the 0.5–5 at. % range. It is shown that, in contrast to the single crystal, a strong rise of absorption coefficient was detected already at wavelength shorter than 400 nm in all nanoceramic samples studied. Furthermore, in nanoceramic samples unusual UV emission band near 3.1 eV was observed, which is not observed in the YAG:Ce single crystal. High pr…

RadiationMaterials scienceDopingAnalytical chemistrychemistry.chemical_elementSinteringMineralogyNanoceramicCeriumchemistryAttenuation coefficientvisual_artvisual_art.visual_art_mediumCeramicLuminescenceInstrumentationSingle crystalRadiation Measurements
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RFID passive gas sensor integrating carbon nanotubes

2011

Carbon nanotube (CNT) composites are sensitive to the presence of gases due to their high surface-to-volume ratio and hollow structure that are well suited for gas molecule absorption and storage. Such sensing capability is here integrated with UHF RF identification (RFID) technology to achieve passive and low-cost sensors, remotely readable. CNT film (buckypaper) is used as a localized variable resistive load integrated into a tag antenna, which becomes able to transduce the presence of hazardous gas in the environment, ammonia in this case, into a change of its electromagnetic features. The dynamic range and the hysteresis of the radio sensor are investigated by simulations, equivalent ci…

RadiationMaterials scienceDynamic rangebusiness.industryElectrical engineeringBuckypaperSettore ING-INF/02 - Campi ElettromagneticiCarbon nanotubeCondensed Matter Physicslaw.inventionUltra high frequencylawProof of conceptRFID sensor antennaEquivalent circuitElectrical and Electronic EngineeringAntenna (radio)Absorption (electromagnetic radiation)business
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Structural investigation of e-beam cured epoxy resins through solid state NMR

2012

Abstract In this paper the network structure of e-beam cured DGEBF based epoxy resins is investigated. Two epoxy systems, having different reactivity and cured in different process conditions, were analyzed through solid state NMR spectroscopy. The analysis shows that the more reactive system has higher cross-linking density and higher uniformity of network distribution. Similar information were obtained, in a previous work, on the same systems through dynamic mechanical thermal analysis. It is worth noting that unlike DMTA tests, which interfere with the molecular structure of the analyzed material, due to the heating during the analysis itself, more reliable information, without any artef…

RadiationMaterials scienceEpoxy resin E-beam curing Network structure Dynamic-mechanical–thermal analysis Solid statenuclearmagneticresonanceEpoxyDynamic mechanical analysisSolid-state nuclear magnetic resonancevisual_artPolymer chemistryvisual_art.visual_art_mediumElectron beam processingMoleculeReactivity (chemistry)Composite materialThermal analysisSpectroscopyRadiation Physics and Chemistry
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Spectral Measurement of Photon Emission from Individual Gold Nanoparticles Using Scanning Tunneling Microscopy

2016

The light emission spectra of individual Au nanoparticles induced by a scanning tunneling microscope (STM) have been investigated. Two-dimensional ensembles of tunnel-coupled Au particles were prepared by thermal evaporation onto a native oxide silicon wafer in ultrahigh vacuum (10 – 9 mbar). Our STM measurements show a single peak at photon energy 1.6 eV in the tunneling mode and two peaks at 2.2 eV (connected with the Mie plasmon) and 1.45 eV (a new peak which was not discussed in literature before) in the field emission mode.

RadiationMaterials scienceGold nanoparticle010405 organic chemistrybusiness.industryAnalytical chemistryElectron-photon spectroscopy010402 general chemistryCondensed Matter Physics01 natural sciencesElectrochemical scanning tunneling microscope0104 chemical scienceslaw.inventionPhoton emissionColloidal goldlawComputer Science::Systems and ControlCondensed Matter::SuperconductivityScanning ion-conductance microscopyOptoelectronicsGeneral Materials ScienceScanning tunneling microscopebusinessScanning tunneling microscope (STM)
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Determination of gas temperature of high-frequency low-temperature electrodeless plasma using molecular spectra of hydrogen and hydroxyl-radical

2012

Abstract In this study we determine gas temperature of He+H 2 , Ar+H 2 and Ne+H 2 high frequency electrodeless lamps using intensity distribution in rotational spectra of hydrogen molecule and hydroxyl radical. The measurement results show that OH rotational spectra can be successfully used for estimation of gas temperature of the high-frequency electrodeless lamps at very small amounts of hydrogen present in plasma. The analysis of the measurement results leads to the conclusion that in “pure” plasma the applied energy is used to heat plasma, while for the plasma with hydrogen addition the energy is used in chemical reactions.

RadiationMaterials scienceHydrogenAnalytical chemistrychemistry.chemical_elementRotational temperaturePlasmaChemical reactionAtomic and Molecular Physics and OpticsSpectral linechemistry.chemical_compoundchemistryHydroxyl radicalPlasma diagnosticsAtomic physicsSpectroscopyIntensity (heat transfer)Journal of Quantitative Spectroscopy and Radiative Transfer
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Towards a Study of Effects on Hydrogen Diffusion into T40 Titanium Alloys

2015

In a global study of titanium alloys behavior in specific aqueous solution (embrittlement, corrosion and corrosion under stresses), the present work focuses on hydrogen diffusion into the metal and the consequences on its microstructure. Two ways of hydrogen charging were used to investigate this issue (gaseous and cathodic charging). The final aim is to determine a fitted method to create an identified microstructure and then to perform accelerated aging tests of titanium U-Bend samples into an autoclave with a specific environment. Hydrogen absorption and formation of titanium hydride have been studied by SEM analyses and by X-ray diffraction methods.

RadiationMaterials scienceHydrogenHydrideMetallurgyTitanium hydridechemistry.chemical_elementTitanium alloyCondensed Matter PhysicsCorrosionchemistry.chemical_compoundchemistryGeneral Materials ScienceEmbrittlementHydrogen embrittlementTitaniumDefect and Diffusion Forum
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Numerical Simulations on the Growth of Thin Oxide Films on Aluminum Substrates

2010

We investigated the oxidation of nanocrystalline aluminum surfaces by using variable charge molecular dynamics at 600 K under three oxygen pressures: 1, 10 and 20 atm. The interaction potential was described by the electrostatic plus (Es+) model that allows dynamical charge transfer among atoms. We mainly focused on the effect of the oxygen pressure on the oxidation kinetic, the chemical composition and the microstructure of the oxide films formed. The results show that oxidation kinetics as well as chemical composition and microstructure depend on the applied oxygen pressure. The oxide film thickness tends to a limiting value equal to ~3 nm. Finally, we obtained a partially crystalline oxi…

RadiationMaterials scienceInorganic chemistryOxidechemistry.chemical_elementCondensed Matter PhysicsMicrostructureOxygenNanocrystalline materialCrystallinitychemistry.chemical_compoundMolecular dynamicsChemical engineeringchemistryGeneral Materials ScienceThin filmChemical compositionDefect and Diffusion Forum
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Crystal Data for Metal Cimetidine Isotiocionates: M(CM)2(NCS)2 (M = Co(II), Ni(II), Cu(II))

1992

AbstractMetal cimetidine isothiocyanates, M(C10H16SN6)2(NCS)2, where M = Co(II), Ni(II) and Cu(II), have been investigated by means of X-ray powder diffraction. Unit cell dimensions were determined from powder diffractometer data. Refined cell parameters (monoclinic with a primitive cell), powder data, calculated densities and Z value are presented.

RadiationMaterials scienceInorganic chemistryPrimitive cellCondensed Matter PhysicsMetalCrystallographyPowder DiffractometerCrystal datavisual_artmedicinevisual_art.visual_art_mediumGeneral Materials ScienceCimetidineInstrumentationPowder diffractionmedicine.drugMonoclinic crystal systemPowder Diffraction
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Photoemission time-of-flight spectromicroscopy of Ag nanoparticle films on Si(111)

2004

Abstract Time-of-flight photoemission electron microscopy was used to measure spatially resolved energy distribution curves of electrons emitted from Ag nanoparticle films with different mass thicknesses. Two-photon photoemission (2PPE) was induced by femtosecond laser pulse excitation with 3.1 eV photon energy and 200 fs pulse width. Regions of Ag nanoparticles with different average sizes and one region with a continuous 100 nm thick Ag film were deposited as a stepped wedge on a Si(1 1 1) substrate. Upon laser excitation the nanoparticle films exhibit a very high electron emission yield in the images, whereas the uncovered Si surface and the continuous Ag film are dark. The time-of-fligh…

RadiationMaterials scienceInverse photoemission spectroscopyAnalytical chemistryPhysics::OpticsNanoparticleAngle-resolved photoemission spectroscopyPhoton energyCondensed Matter PhysicsMolecular physicsAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsCondensed Matter::Materials ScienceTime of flightPhotoemission electron microscopyCondensed Matter::SuperconductivityFemtosecondPhysical and Theoretical ChemistrySpectroscopyPlasmonJournal of Electron Spectroscopy and Related Phenomena
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