Search results for "21"

showing 10 items of 34876 documents

Ion source research and development at University of Jyväskylä: Studies of different plasma processes and towards the higher beam intensities

2015

MonPS16; International audience; The long-term operation of high charge state electron cyclotron resonance ion sources fed withhigh microwave power has caused damage to the plasma chamber wall in several laboratories.Porosity, or a small hole, can be progressively created in the wall on a year time scale, which cancause a water leak from the cooling system into the plasma chamber vacuum. A burnout of theVENUS chamber is investigated. Information on the hole formation and on the necessary localhot electron power density is presented. Next, the hot electron flux to the wall is studied bymeans of simulations. First, the results of a simple model assuming that electrons are fullymagnetized and …

010302 applied physicsbeam intensityMaterials scienceta114ta213plasma diagnostics[PHYS.PHYS.PHYS-ACC-PH]Physics [physics]/Physics [physics]/Accelerator Physics [physics.acc-ph]Cyclotron resonanceElectronPlasma7. Clean energy01 natural sciencesElectron cyclotron resonanceIon source010305 fluids & plasmasIonBeamlinePhysics::Plasma Physics0103 physical scienceselectron cyclotron resonance ion sourcesPlasma diagnosticsAtomic physicsInstrumentation
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2020

Desulfurization of hydrocarbons is an important step in the processing of petroleum products, which requires an accurate and robust method for the sulfur-containing component evaluation. On the other hand, sulfur-containing heteroatomic hydrocarbon additives are harmful for people and the environment. Therefore, it is advantageous to conduct laboratory tests at low volumes to reduce doses of exposure of sulfur-containing vapors to the personnel. Microfluidics is an emerging platform that provides an advantage to operate with low volumes. The microfluidic dielectric spectroscopy approach is proposed in the current contribution as a platform for determination of the concentration of polar het…

010302 applied physicschemistry.chemical_classificationAnalyteMaterials sciencebusiness.industryMicrofluidicsGeneral Physics and Astronomy02 engineering and technologyDielectric021001 nanoscience & nanotechnology01 natural sciencesDielectric spectroscopyPetroleum productHydrocarbonchemistry0103 physical sciencesGasoline0210 nano-technologyProcess engineeringbusinessMicroscale chemistryAIP Advances
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Correlation between surface engineering and deformation response of some natural polymer fibrous systems

2018

Surfaces of bamboo derived cellulosic fibrous systems have been modified by air-plasma treatment. Their deformational response was studied to establish the relationship between their three-dimensional profile and permanent deformation as a measure of their comfort properties since the fibrous system made of natural polymer comes into contact with the skin. The composite should have a permanent deformation close to zero, in order to be, in terms of dimensions, as stable as possible. By analyzing the area of 1 cm2 using a Universal Surface Tester (UST), different 3D surface diagrams and surface roughness values were obtained. This type of surface investigation provides relevant information a…

010302 applied physicschemistry.chemical_classificationBambooMaterials science02 engineering and technologyPolymerSurface engineering021001 nanoscience & nanotechnology01 natural scienceschemistry0103 physical sciencesSurface modificationGeneral Materials ScienceSurface geometryComposite materialDeformation (engineering)0210 nano-technology
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Electrochemical deposition of aniline derivatives for conductometric gas sensors

2019

International audience; Polymer film of poly(2,3,5,6-tetrafluoroaniline) (PTFA) were electroplated on ITO substrate from acidic medium by chronoamperometry. Electrochemical and morphological characterizations were performed and compared to polyaniline properties similarly coated. It seemed that PTFA film had an irreversible redox response with poor conductivity due to the absence of acid-base doping. This film were then incorporated in a patented device called MSDI heterojunction to perform ammonia sensing in humid atmosphere.

010302 applied physicschemistry.chemical_classificationMaterials scienceheterojunctionHeterojunction02 engineering and technologyPolymerConductivityChronoamperometry021001 nanoscience & nanotechnologyElectrochemistryammonia01 natural sciencespolyanilineconductometric sensorschemistry.chemical_compound[CHIM.POLY]Chemical Sciences/PolymersAnilineMonomerchemistryChemical engineering0103 physical sciencesPolyaniline[CHIM.OTHE]Chemical Sciences/Other0210 nano-technologyMaterials Today: Proceedings
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Influence of the MgO barrier thickness on the lifetime characteristics of magnetic tunnelling junctions for sensors

2016

Magnetic tunnelling junctions increasingly enter the market for magnetic sensor applications. Thus, technological parameters such as the lifetime characteristics become more and more important. Here, an analysis of the lifetime characteristics of magnetic tunnelling junctions using the Weibull statistical distribution for CoFeB/MgO/CoFeB junctions is presented. The Weibull distribution is governed by two parameters, the characteristic lifetime η of the population and the shape parameter β, which gives information about the presence of an infant mortality. The suitability of the Weibull distribution is demonstrated for the description of dielectric breakdown processes in MgO-based tunnelling…

010302 applied physicseducation.field_of_studyMaterials scienceAcoustics and UltrasonicsDielectric strengthCondensed matter physicsAnnealing (metallurgy)Population02 engineering and technology021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesShape parameterSurfaces Coatings and FilmsElectronic Optical and Magnetic Materials0103 physical sciences0210 nano-technologyeducationLow voltageQuantum tunnellingWeibull distributionVoltageJournal of Physics D: Applied Physics
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Light-induced nonthermal population of optical phonons in nanocrystals

2017

Raman spectroscopy is widely used to study bulk and nanomaterials, where information is frequently obtained from spectral line positions and intensities. In this study, we monitored the Raman spectrum of ensembles of semiconductor nanocrystals (NCs) as a function of optical excitation intensity (optical excitation experiments). We observe that in NCs the red-shift of the Raman peak position with increasing light power density is much steeper than that recorded for the corresponding bulk material. The increase in optical excitation intensity results also in an increasingly higher temperature of the NCs as obtained with Raman thermometry through the commonly used Stokes/anti-Stokes intensity …

010302 applied physicseducation.field_of_studyMaterials sciencePhononPopulation02 engineering and technologyPhysik (inkl. Astronomie)021001 nanoscience & nanotechnology01 natural sciencesMolecular physicsSpectral lineNanomaterialssymbols.namesakeElectrical resistivity and conductivityExcited state0103 physical sciencessymbols0210 nano-technologyeducationRaman spectroscopyExcitation
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Multiphysical Modeling of Transport Phenomena During Laser Welding of Dissimilar Steels

2016

Abstract The success of new high-strength steels allows attaining equivalent performances with lower thicknesses and significant weight reduction. The welding of new couples of steel grades requires development and control of joining processes. Thanks to high precision and good flexibility, laser welding became one of the most used processes for joining of dissimilar welded blanks. The prediction of the local chemical composition in the weld formed between dissimilar steels in function of the welding parameters is essential because the dilution rate and the distribution of alloying elements in the melted zone determines the final tensile strength of the weld. The goal of the present study i…

010302 applied physicsturbulent flowHeat-affected zoneMaterials scienceLaser beam weldingdissimilar materials02 engineering and technologyMechanicsWeldingPhysics and Astronomy(all)021001 nanoscience & nanotechnology01 natural sciencesFick's laws of diffusiontransport of specieslaw.inventionlaminar flowlaw0103 physical sciencesHeat transferWeld poolLaser weldingDiffusion (business)0210 nano-technologyTransport phenomenaPhysics Procedia
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Multiple vibrational resonances in the Raman spectra of liquid ethanes

1990

The Raman spectra of liquid ethane, ethane-d3 and ethane-d6 were recorded and analysed. The CH3 and CD3 stretching regions were computer resolved using Cauchy-Gaussian and Voigt functions to account for asymmetric band shapes. Multiple vibrational resonances were investigated using the wavenumbers and observed intensities in these regions. The developed basis functions show strong mixing of the levels in these regions. In general the resonances appear to be less strong in the liquid phase than reported in previous studies of the gaseous state. Some new assignments in the liquid-state spectra of ethanes could be suggested.

010304 chemical physicsChemistryComputer aidLiquid phaseBasis function02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesMolecular physicsSpectral linesymbols.namesakeLiquid stateNuclear magnetic resonance0103 physical sciencessymbolsWavenumberGeneral Materials ScienceAstrophysics::Earth and Planetary AstrophysicsPhysics::Chemical Physics0210 nano-technologyRaman spectroscopySpectroscopyMixing (physics)Journal of Raman Spectroscopy
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Germanium Dicarbide: Evidence for a T-Shaped Ground State Structure

2017

The equilibrium structure of germanium dicarbide GeC2 has been an open question since the late 1950s. Although most high-level quantum calculations predict an L-shaped geometry, a T-shaped or even a linear geometry cannot be ruled out because of the very flat potential energy surface. By recording the rotational spectrum of this dicarbide using sensitive microwave and millimeter techniques, we unambiguously establish that GeC2 adopts a vibrationally averaged T-shaped structure in its ground state. From analysis of 14 isotopologues, a precise r0 structure has been derived, yielding a Ge–C bond length of 1.952(1) A and an apex angle of 38.7(2)°.

010304 chemical physicsChemistrychemistry.chemical_elementLinear molecular geometryGermanium02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesMolecular physicsBond lengthCrystallography0103 physical sciencesPotential energy surfaceGeneral Materials ScienceMillimeterIsotopologuePhysical and Theoretical Chemistry0210 nano-technologyGround stateMicrowaveThe Journal of Physical Chemistry Letters
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pKa at Quartz/Electrolyte Interfaces.

2016

Acidity of silanol sites at the crystalline quartz/aqueous electrolyte (NaCl, NaI, KCl) interfaces are calculated from ab initio molecular dynamics simulations. pKa’s are found to follow a combination of the cationic and anionic Hofmeister series in the order pKa(neat solution) < pKa(NaCl) < pKa(NaI) < pKa(KCl), in agreement with experimental measurements. Rationalization of this ranking is achieved in terms of the microscopic local solvation of the protonated silanols and their conjugated bases, the silanolates SiO–. The change in the pKa is the result of both water destructuring by alkali halides, as well as of the specific cation/SiO– interaction, depending on the electrolyte. M…

010304 chemical physicsHofmeister series[SDV]Life Sciences [q-bio]Inorganic chemistrySolvationCationic polymerizationHalideProtonation02 engineering and technologyElectrolyte021001 nanoscience & nanotechnologyAlkali metal01 natural sciencesSilanolchemistry.chemical_compoundchemistry0103 physical sciencesGeneral Materials Science[PHYS.PHYS.PHYS-CHEM-PH]Physics [physics]/Physics [physics]/Chemical Physics [physics.chem-ph]Physical and Theoretical Chemistry0210 nano-technologyThe journal of physical chemistry letters
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