Search results for "Impurity"

showing 10 items of 330 documents

ESD of nonthermal halogen atoms from In-doped (001) KBr

1995

Abstract We have measured the kinetic energy distributions of neutral halogen atoms emitted due to electron-stimulated desorption (ESD) from In-doped (001)KBr single crystals. The concentration of In+ in investigated samples varied between 1017 and 1020 particles/cm3. The measurements were performed at target temperature of 150°C. In all cases the energy spectra consist of two peaks. The distribution of low-energy particles can be described by the thermal (Maxwellian) energy spectrum. Particles contributing to the second peak have nonthermal kinetic energies. The emission of halogen atoms having nonthermal energies decreases with an increase in the concentration of In impurities. At the sam…

Nuclear and High Energy PhysicsRange (particle radiation)ChemistryImpurityAstrophysics::High Energy Astrophysical PhenomenaDesorptionDiffusionHalogenDopingAtomic physicsKinetic energyInstrumentationSpectral lineNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Direct synthesis of pure brannerite UTi2O6

2019

International audience; A new method based on the precipitation of uranium(IV) and titanium(IV) hydroxide precursors was developed to prepare pure brannerite UTi2O6 samples. In fact, U(IV) dissolved in HCl (6 mol L−1) was mixed to Ti (IV) alkoxyde before a basification step with an excess of NH4OH to obtain a highly reactive nanometric (U,Ti)(OH)4 powder. The obtained powder was then dried under vacuum, pressed into pellets and finally fired at 1300 °C. This method led to the formation of pure brannerite in contrast to previous reported protocols, which showed the formation of impurities such us UO2 and TiO2. The refined unit cell parameters of UTi2O6 led to a = 9.8113(2) Å, b = 3.7681(1) Å…

Nuclear and High Energy PhysicsUranium titanateMaterials scienceuranium hydroxide Corresponding authorUranium dioxide[SDU.STU.PE]Sciences of the Universe [physics]/Earth Sciences/Petrographychemistry.chemical_element02 engineering and technology01 natural sciencesUranium hydroxide010305 fluids & plasmaschemistry.chemical_compoundImpurity0103 physical sciencesBrannerite[CHIM]Chemical SciencesGeneral Materials ScienceOxide mineralsPrecipitation (chemistry)Uranium021001 nanoscience & nanotechnologyNuclear Energy and EngineeringchemistryX-ray crystallographyHydroxide0210 nano-technologyTitaniumNuclear chemistry
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EPR hyperfine structure of the Mo‐related defect in CdWO 4

2005

The hyperfine structure (hf) of the electron paramagnetic resonance (EPR) spectrum of Mo-related impurity defects in CdWO4 crystals observed previously (U. Rogulis, Radiat. Meas. 29, 287 (1998) [1]) is reconsidered taking into account interactions with two different groups of neighbouring Cd nuclei. The best fit calculated EPR spectrum to the experimental is obtained considering 2 groups of 3 and 2 equivalent Cd nuclei, respectively. (© 2005 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim)

Nuclear magnetic resonanceImpuritylawChemistryElectron paramagnetic resonanceHyperfine structureMolecular physicslaw.inventionphysica status solidi (c)
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Low temperature atomic layer deposition of noble metals using ozone and molecular hydrogen as reactants

2013

Abstract Atomic layer deposition (ALD) of noble metals by thermal processes has relied mostly on the use of molecular oxygen as a reactant at temperatures of 200 °C and above. In this study, the concept of using consecutive ozone and molecular hydrogen pulses with noble metal precursors in ALD is introduced for palladium, rhodium, and platinum metals. This approach facilitates the growth of noble metal thin films below 200 °C. Also the ALD of palladium oxide thin films is demonstrated by the ozone-based chemistry. The growth rates, resistivities, crystallinities, surface roughnesses, impurity contents, and adhesion of the films to the underlying Al 2 O 3 starting surface are reported and th…

OzoneInorganic chemistrychemistry.chemical_element02 engineering and technologyengineering.material010402 general chemistry01 natural sciencesRhodiumAtomic layer depositionchemistry.chemical_compoundImpurityMaterials ChemistryThin filmta116ta114Metals and AlloysSurfaces and Interfaces021001 nanoscience & nanotechnology0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialschemistryengineeringNoble metal0210 nano-technologyPlatinumPalladiumThin Solid Films
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Impurity analysis of JET DiMPle pulses

2021

Divertor monitoring pulses (DiMPle) have been run in JET from the C35 campaign onwards. They provide an opportunity to study the impurity contamination of the plasma when it is limited by different surfaces within the machine, as well as the longer term behaviour of the impurities. In these discharges the plasma is first limited on the outer wall, then on the inner wall and, subsequently, in the X-point configuration the outer strike point is positioned on the horizontal tile 5 of the machine followed by tile 6 and then the vertical tile 7. The present study details the impurity behaviour in the DiMPle pulses from JET-ILW campaigns C35 to C38, which ran from 2015 to 2019. The impurities can…

PaperJet (fluid)TokamakMaterials sciencebehaviour on Plasma Facing SurfacesJET-ILWCondensed Matter Physicsimpuritieslaw.inventionNuclear Energy and EngineeringlawDimpleImpuritylong-term impurity behaviourtokamaksAtomic physicsPlasma Physics and Controlled Fusion
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Giant magnetoresistance in semiconducting DyNiBi

2008

Abstract The semiconducting half-Heulser compound DyNiBi shows a negative giant magnetoresistance (GMR) below 200 K. Except for a weak deviation, this magnetoresistance scales roughly with the square of the magnetization in the paramagnetic state, and is related to the metal–insulator transition. At low temperature, a positive magnetoresistance is found, which can be suppressed by high fields. The magnitude of the positive magnetoresistance changes slightly with the amount of impurity phase.

ParamagnetismMagnetizationColossal magnetoresistanceMaterials scienceCondensed matter physicsMagnetoresistanceImpurityPhase (matter)Materials ChemistryGiant magnetoresistanceGeneral ChemistryMetal–insulator transitionCondensed Matter PhysicsSolid State Communications
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Removal of total organic carbon from peat solution by hybrid method—Electrocoagulation combined with adsorption

2018

Abstract Humic substances end up in water from the drainage basin causing eutrophication and the spread of algae. These natural organic substances have an influence on the physical, chemical and biological properties of the water system. Adsorption and electrocoagulation (EC) are commonly used purification methods in the water and wastewater treatment. Both methods are used by themselves for removing a wide range of impurities. In this research, the novelty was to study the effect of combined activated carbon (AC) adsorption and electrocoagulation method on the removal of organic substances as total organic carbon (TOC) from the peat solution. With the hybrid method, TOC content was efficie…

Peatmedicine.medical_treatment02 engineering and technology010501 environmental sciences01 natural sciencesElectrocoagulationAdsorptionImpuritymedicineactivated carbonSafety Risk Reliability and Qualityta116Waste Management and Disposal0105 earth and related environmental sciencesTotal organic carbonChemistryProcess Chemistry and Technologywater treatment021001 nanoscience & nanotechnologyhumic acid removalelectrocoagulationadsorptionEnvironmental chemistrySewage treatment0210 nano-technologyEutrophicationBiotechnologyActivated carbonmedicine.drugJournal of Water Process Engineering
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Substitution effects on the relaxor properties of lead magnesium niobate ceramics

1999

Abstract The temperature dependence of the dielectric permittivity is studied in different Pb(Mg⅓Nb⅔)O3 based ceramics, in which the ordered region size can be changed by introducing titanium or lanthanum ions. Both the relaxor behaviour and the nonlinear dielectric component are found to be dependent on the impurity content. Especially, the nonlinearity increases strongly as the material exhibits a more conventional ferroelectric behaviour, i.e. as the size of the polar clusters, which develop in the paraelectric matrix, increases.

PermittivityMaterials scienceCondensed matter physicsGeneral Chemical EngineeringGeneral Physics and Astronomychemistry.chemical_elementMineralogyDielectricFerroelectricityIonchemistryImpurityvisual_artLanthanumvisual_art.visual_art_mediumCeramicTitaniumPhilosophical Magazine B
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Comparison of clot lysis activity and biochemical properties of originator tenecteplase (Metalyse®) with those of an alleged biosimilar

2014

The bioengineered tissue plasminogen activator tenecteplase is an important treatment modality of acute myocardial infarction recommended by international guidelines. Following introduction of originator tenecteplase (brand names Metalyse(®) and TNKase(®)), a "biosimilar" tenecteplase became available for commercial use in India under the brand name Elaxim(®) in the absence of Indian biosimilar guidelines which came into force from September 15th, 2012. Based on a report of biochemical and fibrinolytical differences between Metalyse and Elaxim, we have systematically compared them in a range of routine quality testing assays. As compared to Metalyse, Elaxim exhibited less clot lysis activit…

PharmacologyGlycosylationtenecteplaseglycosylationbusiness.industryChinese hamster ovary cellTenecteplaseBiosimilarPharmacologyTissue plasminogen activatorSialic acidchemistry.chemical_compoundClot lysischemistryimpuritymedicinePharmacology (medical)Clinical efficacyOriginal Research Articlebiosimilarclot lysisbusinessmedicine.drugFrontiers in Pharmacology
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Semi-empirical calculations of the Nb-ion positions in doped crystals

1998

The atomic and electronic structures of Nb impurities in doped perovskite KTaO3 crystals are calculated using the semi-empirical quantum chemical method of the intermediate neglect of the differential overlap (INDO) and a supercell model. When seven Ta ions are replaced by seven Nb ions, the latter clearly demonstrate self-ordering effects which are related to the experimentally observed impurity-induced phase transition. A single Nb impurity reveals an off-centre displacement which is very close to that found in XAFS experiments. The relevant energy gain is very small, approximately 0.0375 eV, which is much smaller than the Nb-clustering energy gain (0.12 eV). These results led us to the c…

Phase transitionChemistryDopingElectronic structureCondensed Matter PhysicsMolecular physicsX-ray absorption fine structureIonCondensed Matter::Materials ScienceCrystallographyImpurityAb initio quantum chemistry methodsGeneral Materials SciencePerovskite (structure)Journal of Physics: Condensed Matter
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