Search results for "PHOTOELECTRON"

showing 10 items of 458 documents

Coupling of electrochemical, electrogravimetric and surface analysis techniques to study dithiocarbamate/bronze interactions in chloride media

2018

International audience; Interaction between ammonium pyrrolidinedithiocarbamate (PDTC) and bronze in 30 g L-1 NaCl was investigated at several concentrations between 0.1 and 10 mM by means of various electrochemical and spectroscopic techniques. Electrochemical measurements revealed a fast adsorption process of PDTC on Cu and Pb and the formation of a thick insulating and protective film with a high surface coverage. At high concentrations, PDTC prevents oxides formation. Surface analyses confirm PDTC adsorption on bronze mainly via interaction between sulphur atoms and Cu sites to form Cu I-PDTC complex.

Neutral inhibitionMaterials science020209 energyGeneral Chemical EngineeringInorganic chemistry02 engineering and technologyengineering.materialElectrochemistryChlorideCorrosionAdsorptionX-ray photoelectron spectroscopyPolarizationXPS0202 electrical engineering electronic engineering information engineeringmedicine[CHIM]Chemical SciencesGeneral Materials ScienceBronzePolarization (electrochemistry)Dithiocarbamatechemistry.chemical_classificationEISGeneral Chemistry021001 nanoscience & nanotechnologyBronzechemistryRaman spectroscopyengineering0210 nano-technologymedicine.drugCorrosion Science
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ODS ferritic steels obtained from gas atomized powders through the STARS processing route: Reactive synthesis as an alternative to mechanical alloying

2018

Authors acknowledge ALBA synchrotron (Spain) for the provision of beamtime on the beam line BL22-CLAESS (Proposal 2016081797). Transmission electron microscopy observations were accomplished at Centro Nacional de Microscopía Electrónica, CNME-UCM. This work has been carried out within the framework of the EUROfusion Consortium and has received funding from the Euratom research and training programme 2014–2018 under grant agreement No 633053. The views and opinions expressed herein do not necessarily reflect those of the European Commission. Financial support from Basque Government through the ELKARTEK ACTIMAT 2016 project is also acknowledged.

Nuclear and High Energy PhysicsMaterials scienceScanning electron microscopeMaterials Science (miscellaneous)Oxidechemistry.chemical_element02 engineering and technology01 natural sciences010305 fluids & plasmasNanoclusterschemistry.chemical_compoundRadiation damageFracture toughnessX-ray photoelectron spectroscopy0103 physical sciences:NATURAL SCIENCES:Physics [Research Subject Categories]Yttria-stabilized zirconiaEngineering & allied operationsMetallurgyYttrium021001 nanoscience & nanotechnologyMicrostructurelcsh:TK9001-9401Fusion reactorsNuclear Energy and Engineeringchemistrylcsh:Nuclear engineering. Atomic powerOxide dispersion strengthened ferritic stainless steels (ODS FS)ddc:6200210 nano-technology
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New HAXPES Applications at PETRA III

2018

The application of photoelectron spectroscopy using hard X-rays (HAXPES) is becoming increasingly popular as a powerful spectroscopic tool in materials science. The success of HAXPES lies in the fa...

Nuclear and High Energy PhysicsMaterials scienceX-ray photoelectron spectroscopy0103 physical sciencesNanotechnology02 engineering and technology021001 nanoscience & nanotechnology010306 general physics0210 nano-technology01 natural sciencesAtomic and Molecular Physics and OpticsSynchrotron Radiation News
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Time-of-flight photoelectron momentum microscopy with 80–500 MHz photon sources: electron-optical pulse picker or bandpass pre-filter

2021

Journal of synchrotron radiation 28(6), 1891 - 1908 (2021). doi:10.1107/S1600577521010511

Nuclear and High Energy PhysicsSpectrum analyzerMaterials sciencePhotonMicroscopephotoelectron diffraction550Synchrotron radiationmomentum microscopylaw.inventionOpticslawddc:550Pulse waveTime domaintime of flight spectroscopy ; momentum microscopy ; ARPES ; photoelectron diffraction ; pulse pickingpulse pickingInstrumentationMomentum (technical analysis)Radiationbusiness.industryARPESResearch PapersTime of flighttime-of-flight spectroscopyPhysics::Accelerator Physicsbusiness
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Smooth crack-free targets for nuclear applications produced by molecular plating

2013

The production process of smooth and crack-free targets by means of constant current electrolysis in organic media, commonly known as molecular plating, was optimized. Using a Nd salt, i.e., [Nd(NO3)(3)center dot 6H(2)O], as model electrolyte several constant current density electrolysis experiments were carried out to investigate the effects of different parameters, namely the plating solvent (isopropanol and isobutanol mixed together, pyridine, and N,N-dimethylformamide), the electrolyte concentration (0.11, 0.22, 0.44 mM), the applied current density (0.17, 0.3, 0.7, and 1.3 mA/cm(2)), and the surface roughness of the deposition substrates (12 and 24 nm). Different environments (air and …

Nuclear and High Energy PhysicsspectroscopyScanning electron microscopeX-ray photoelectronAnalytical chemistrychemistry.chemical_elementElectrolytegamma-ray spectroscopy; Atomic force microscopy (AFM); Molecular plating; Neodymium; Smooth crack-free targets; X-ray photoelectron spectroscopy (XPS)Neodymium530law.inventionSmooth crack-free targetsNuclear magnetic resonanceX-ray photoelectron spectroscopylawSurface roughnessgamma-raySpectroscopyInstrumentationPhysicsNeodymiumElectrolysisspectroscopy (XPS)X-ray photoelectron spectroscopy (XPS)Molecular platingchemistrygamma-ray spectroscopyAtomic force microscopy (AFM)Current density
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Effect of annealing on Zn1−xCoxO thin films prepared by electrodeposition

2009

Polycrystalline thin films of Zn"1"-"xCo"xO with different cobalt (Co) content were grown on indium tin oxide (ITO) substrates by cathodic electrodeposition technique and subsequently annealed in air at 400^oC. The effect of annealing in their structural, optical and chemical properties has been characterized by X-ray diffraction (XRD), energy-dispersive spectroscopy (EDS), X-ray photoelectron spectroscopy (XPS), Raman scattering and optical spectroscopy. Our measurements indicate that moderate annealing increases the crystal quality of the films. The films are highly transparent in the visible range and evidence an increase of the band gap and of the intensity of three typical Co absorptio…

Nuclear magnetic resonanceMaterials scienceX-ray photoelectron spectroscopyAnnealing (metallurgy)Absorption bandBand gapX-ray crystallographyGeneral EngineeringAnalytical chemistryThin filmSpectroscopyIndium tin oxideMicroelectronics Journal
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Surface modifications induced by pulsed-laser texturing—Influence of laser impact on the surface properties

2014

Abstract Laser cleaning technology provides a safe, environmentally friendly and very cost effective way to improve cleaning and surface preparation of metallic materials. Compared with efficient cleaning processes, it can avoid the disadvantages of ductile materials prepared by conventional technologies (cracks induced by sand-blasting for example) and treat only some selected areas (due to the optical fibers). By this way, laser technology could have several advantages and expand the range of thermal spraying. Moreover, new generations of lasers (fiber laser, disc laser) allow the development of new methods. Besides a significant bulk reduction, no maintenance, low operating cost, laser f…

Optical fiberMaterials scienceSiliconbusiness.industryMetallurgyGeneral Physics and Astronomychemistry.chemical_elementSurfaces and InterfacesGeneral ChemistryCondensed Matter PhysicsLaserIndentation hardnessSurfaces Coatings and Filmslaw.inventionX-ray photoelectron spectroscopychemistrylawAluminiumFiber laserOptoelectronicsbusinessThermal sprayingApplied Surface Science
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Structural, electronic, and electrical properties of an Undoped n-Type CdO thin film with high electron concentration

2014

Transparent conducting metal oxides (TCOs) combine the properties of optical transparency in the visible region with a high electrical conductivity. They are a critical component as the window electrode in liquid crystal and electroluminescent display devices, as well as in many designs of solar cells now under development. Sn-doped In2O3 is currently the most important TCO, but it suffers from some drawbacks. These include the high cost of indium, weak optical absorption in the blue-green region, as well as chemical instability that leads to corrosion phenomena in organic light-emitting devices. Indium tin oxide (ITO) films are also brittle and of relatively low durability. A number of oth…

Organic light-emitting devices Optical propertiesMaterials scienceDisplay deviceElectroluminescent display deviceHigh electron concentrationCdO; semiconductor; TCOchemistry.chemical_elementChemical vapor depositionAtomic force microscopyElectric conductivityElectrical resistivity and conductivityChemical vapor depositionLight absorptionThin filmPhysical and Theoretical ChemistryThin filmCdOHigh electrical conductivitybusiness.industryDegenerate semiconductorFree electron concentrationsemiconductorSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsIndium tin oxideElectroluminescent displayPhotoelectron spectroscopyGeneral EnergychemistryLiquid crystalTCOTinElectrodeOptoelectronicsX ray diffraction Conducting metal oxidebusinessTinLuminescence measurementIndium
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Stoichiometry-related Auger lineshapes in titanium oxides: Influence of valence-band profile and of Coster-Kronig processes

2004

International audience; The ability to determine the nature and the occurrence of defects is a central need of ceramic surface chemistry. In titanium oxides, the Ti-LMV Auger decays line shape is very sensitive to the titanium degree of oxidation, and has long been empirically used as a qualitative probe of the stoichiometry. In the present work, resonant Auger and resonant valence-band measurements at the Ti-L2,3 edges in TiO2, TiO2–x and metallic titanium provide a clear evidence that the evolutions of the Ti-LMV Auger line shape are due to drastic changes in the valence-band profile and in the probability of L2L3V Coster-Kronig decay processes when a fraction of titanium ions is reduced.…

PACS: 71.20.-b 32.80.Hd 77.84.Bw 82.80.Pvoxidationchemistry.chemical_element02 engineering and technologyceramics01 natural sciencesElectron spectroscopy71.20.-b; 32.80.Hd; 77.84.Bw; 82.80.PvIonAugerX-RAY-ABSORPTION; SURFACE-DEFECTS; RUTILE TIO2; Resonant AugerMetalsymbols.namesakephotoelectron spectra0103 physical sciencesRUTILE TIO2titanium010306 general physicstitanium compoundsAuger electron spectroscopyFermi levelvalence bandsResonant Auger021001 nanoscience & nanotechnologyCondensed Matter PhysicsSURFACE-DEFECTSElectronic Optical and Magnetic Materialsstoichiometrychemistryvisual_artX-RAY-ABSORPTIONsymbolsvisual_art.visual_art_mediumFermi levelspectral line breadthAuger electron spectraAtomic physics0210 nano-technologyStoichiometryTitanium
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Surface investigation of plasma HMDSO membranes post-treated by CF4/Ar plasma

2002

Fluorination treatment has been performed on polysiloxane membranes using a plasma glow discharge of a gases mixture CF4 and argon (plasma enhanced chemical vapor deposition). Atomic force microscopy, XPS analyses and contact angle measurements have been undertaken to explain the surface transformation and behavior, which strongly depend on the morphology, the composition and the hydrophilic/hydrophobic character of the plasma-polymerized initial membranes. Main result is that fluorination, which leads to hydrophobic membranes, has a more relevant effect on amorphous silica-like membranes than on polymer-like ones, according to their chemical composition whereas the plasma surface reaction …

PECVDAnalytical chemistryGeneral Physics and Astronomychemistry.chemical_elementsurface treatments02 engineering and technologySKIN LAYER01 natural sciencesContact angleX-ray photoelectron spectroscopyPlasma-enhanced chemical vapor deposition0103 physical sciencesXPSmembranecontact angle010302 applied physicsGlow dischargeArgonFORCE MICROSCOPYSurfaces and InterfacesGeneral ChemistryPlasma[CHIM.MATE]Chemical Sciences/Material chemistry021001 nanoscience & nanotechnologyCondensed Matter PhysicsTRANSPORTSurfaces Coatings and FilmsAmorphous solidMembranechemistryGAS[ CHIM.MATE ] Chemical Sciences/Material chemistryAFM0210 nano-technology
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