Search results for "layer"

showing 10 items of 2667 documents

68Ge content quality control of 68Ge/68Ga-generator eluates and 68Ga radiopharmaceuticals – A protocol for determining the 68Ge content using thin-la…

2014

(68)Ge breakthrough from a (68)Ge/(68)Ga-generator appears to be one of the most critical parameters for the routine clinical application of this generator and (68)Ga-radiopharmaceuticals. We report a TLC-based (thin-layer chromatography) protocol which allows the (68)Ge breakthrough of a generator to be determined within 1 h post-initial elution. The protocol can also be adapted to allow the (68)Ge content of a (68)Ga-radiopharmaceutical preparation to be determined prior to in vivo application.

RadiationGenerator (computer programming)ChromatographyChemistryElutionContent (measure theory)Thin-layer chromatographyApplied Radiation and Isotopes
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Chalcogen adsorption and surface magnetism

2000

Abstract Investigations concerning the electronic and magnetic properties of oxygen and sulfur adsorbed on magnetized surfaces were carried out by means of angle and spin resolving photoelectron spectroscopy. Iron(110), a polycrystalline iron alloy, and an amorphous metallic glass (Fe 79 B 16 Si 5 ) served as ferromagnetic substrates. Exchange splittings of the O 2p and S 3p derived levels could be detected, demonstrating a magnetic coupling between the chemisorbate and iron. This observation presents a prerequisite for an induced magnetic moment within the adsorbate overlayer. For sulfur an adsorbate-induced structure only in the minority spin channel near the Fermi level was observed whic…

RadiationMaterials scienceAmorphous metalMagnetic momentCondensed matter physicsMagnetismAlloyInorganic chemistryFermi levelengineering.materialCondensed Matter PhysicsAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsOverlayerAmorphous solidCondensed Matter::Materials Sciencesymbols.namesakeFerromagnetismengineeringsymbolsPhysics::Chemical PhysicsPhysical and Theoretical ChemistrySpectroscopyJournal of Electron Spectroscopy and Related Phenomena
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Electronic exchanges between adsorbed Ni atoms and TiO2(110) surface evidenced by resonant photoemission

2011

Abstract Nickel was deposited on stoichiometric TiO2(1 1 0) surface in the 0.02–2.1 equivalent monolayer (eqML) range and analyzed by means of photoemission and resonant photoemission. In the case of very low coverage (lower than 0.1 eqML), deposited nickel reacts with the surface through an electronic transfer from nickel atoms towards titanium ions. This exchange caused the filling of unoccupied Ti3d states leading to the increase of a peak in the TiO2 band gap. These states can be better characterized through resonant photoemission experiments at the Ti 3p → 3d absorption edge: for very low coverage, these states in the TiO2 band gap have resonant behavior of Ti3d electrons rather than N…

RadiationMaterials scienceBand gapInverse photoemission spectroscopychemistry.chemical_elementAngle-resolved photoemission spectroscopyCondensed Matter PhysicsAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsIonNickelAbsorption edgechemistryMonolayerPhysical and Theoretical ChemistryAtomic physicsSpectroscopyTitaniumJournal of Electron Spectroscopy and Related Phenomena
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Numerical Determination of Intrinsic Diffusion Coefficient of Aluminide Coatings on Metals

2009

This paper presents a numerical method to determine the composition dependent diffusivities and to predict the concentration profile during the interdiffusion process. The intrinsic diffusion coefficients in diffusion aluminide coatings (Fe-Al) were determined at 1000oC. The obtained diffusion coefficient for iron in Fe3Al or FeAl is in the range 10-10 to 10-9 cm2.s-1. The aluminum diffusion coefficient varies from 10-11 to 10-7 cm2.s-1 in the same phases.The present approach also permits to model the reactive diffusion in the Fe-Al systems.

RadiationMaterials scienceMetallurgyIntermetallicThermodynamicschemistry.chemical_elementFEALCondensed Matter PhysicsDiffusion layerchemistryAluminiumEffective diffusion coefficientGrain boundary diffusion coefficientGeneral Materials ScienceDiffusion (business)AluminideDefect and Diffusion Forum
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Photoemission microscopy with microspot-XPS by use of undulator radiation and a high-throughput multilayer monochromator at BESSY

1999

We present a new experiment for photoelectron microspectroscopy by use of undulator radiation, which has been set up at the beamline U2 at the Berlin electron storage ring BESSY 1. This approach employs a non-imaging simulated hemispherical electron energy analyser attached to an imaging photoemission electron microscope (FOCUS IS-PEEM) with integrated microarea selector. The photoemission microscope exhibits a lateral resolution of 25 nm (with 4.9 eV UV-excitation), while the resolution with incident synchrotron radiation in the soft X-ray range is about 100-120 nm (mainly due to chromatic aberrations). Photoemission microscopy as well as photoelectron microspectroscopy of selected areas o…

RadiationMaterials scienceMicroscopeEUV multilayer opticsbusiness.industryExtreme ultraviolet lithographySynchrotron radiationUndulatorGratingCondensed Matter Physicsmicroarea XPSAtomic and Molecular Physics and Opticsphotoemission microscopyElectronic Optical and Magnetic Materialslaw.inventionOpticsX-ray photoelectron spectroscopylawBlazed gratingPhysical and Theoretical ChemistrybusinessSpectroscopyMonochromator
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Factors affecting the amount and the mode of merocyanine 540 binding to the membrane of human erythrocytes. A comparison with the binding to leukemia…

1995

Abstract In the presence of albumin Merocyanine 540 (MC540) exhibits a very limited binding to the outer surface of the membrane of normal erythrocytes, whereas pronounced binding is observed to leukemia cells. To find out whether this difference is due to differences in the composition or structural organization of the cell membrane we analyzed effects of a number of covalent and non-covalent perturbations of the red cell membrane on the binding and fluorescence characteristics of membrane-bound MC540. It is shown that exposure of the cells to cationic chlorpromazine, neuraminidase or photodynamic treatment with AlPcS 4 as sensitizer caused a limited increase (30–50%) of MC540 binding, tog…

Radiation-Sensitizing AgentsTMA-DPHHot TemperatureIndolesBSALightChlorpromazineLipid BilayersBiophysicsPhospholipidNeuraminidaseQuantum yieldPyrimidinonesBiochemistryCell membranechemistry.chemical_compoundt-BuOOHOrganometallic CompoundsTumor Cells CulturedmedicineMerocyanine 540HumansPBSCell MembraneErythrocyte MembraneMembrane structureCell Biologymedicine.diseasePEGFluorescenceDIDSLeukemiaLeukemia cellAlPcS4CholesterolSpectrometry FluorescenceMembranemedicine.anatomical_structureBNML cellsBiochemistrychemistryLeukemia MyeloidCovalent bondBiophysicsMC540Biochimica et Biophysica Acta (BBA) - Biomembranes
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Impact of Spectral Resolution on Quantifying Cyanobacteria in Lakes and Reservoirs: A Machine-Learning Assessment

2022

Cyanobacterial harmful algal blooms are an increasing threat to coastal and inland waters. These blooms can be detected using optical radiometers due to the presence of phycocyanin (PC) pigments. The spectral resolution of best-available multispectral sensors limits their ability to diagnostically detect PC in the presence of other photosynthetic pigments. To assess the role of spectral resolution in the determination of PC, a large (N = 905) database of colocated in situ radiometric spectra and PC are employed. We first examine the performance of selected widely used machine-learning (ML) models against that of benchmark algorithms for hyperspectral remote sensing reflectance ( $R_{{rs}})$…

RadiometerArtificial neural networkMultilayer perceptronMultispectral imageGeneral Earth and Planetary SciencesHyperspectral imagingEnvironmental scienceSatelliteElectrical and Electronic EngineeringSpectral resolutionSpectral lineRemote sensingIEEE Transactions on Geoscience and Remote Sensing
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Thermal Infrared Emissivity Dependence on Soil Moisture in Field Conditions

2011

An accurate estimate of land surface temperature, which is a key parameter in surface energy balance models, requires knowledge of surface emissivity. Emissivity dependence on soil water content has been already reported and modeled under controlled conditions at the laboratory. This paper completes and extends that previous work by providing emissivity measurements under field conditions without elimination of impurities, local heterogeneities, or soil cracks appearing in the drying process. The multispectral radiometer CE312-2, with five narrow bands and a broad band in the 8-13-μm range, was used, and surface emissivity values were determined through a temperature-emissivity separation a…

RadiometerSoil testPlanetary boundary layerSoil waterEmissivityGeneral Earth and Planetary SciencesRadiometryEnvironmental scienceSoil scienceElectrical and Electronic EngineeringAtmospheric temperatureWater contentRemote sensingIEEE Transactions on Geoscience and Remote Sensing
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Specific heat studies of ortho-deuterium monolayers physisorbed on graphite

1986

The specific heat of ortho-deuterium monolayers physisorbed on graphite (Grafoil) has been studied in detail at about 100 coverages in the total density range below monolayer completion and at temperatures between 2 and 40 K. Several interesting new features were observed: At the completion of the commensurate 3 × 33 R30° phase the system undergoes an order-disorder transition at T = 18.1 K. This temperature turns out to be 2.34 K lower than that of para-hydrogen on graphite, which elucidates the significant influence of the quantum zero-point energy on these systems. From the heat-capacity data a value of 0.31 ± 0.02 is deduced for the critical exponent a which is in good agreement with th…

Range (particle radiation)ChemistryThermodynamicsSurfaces and InterfacesCondensed Matter PhysicsSurfaces Coatings and FilmsCrystallographyDeuteriumPhase (matter)MonolayerMaterials ChemistryGraphiteCritical exponentQuantumPhase diagramSurface Science
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Laser Ablation of Poly(lactic acid) Sheets for the Rapid Prototyping of Sustainable, Single-Use, Disposable Medical Microcomponents

2018

The employment of single-use, disposable medical equipment has increased the amount of medical waste produced and the advent of point-of-care diagnostics in lab-on-chip format is likely to add further volume. Current materials used for the manufacture of these devices are derived from petroleum sources and are, therefore, unsustainable. In addition, disposal of these plastics necessitates combustion to reduce infection risk, which has, depending on material composition, an undesirable environmental impact. To address these issues, we have developed a general approach for the rapid prototyping of single-use point-of-care cartridges prepared from poly(lactic acid), a sustainable material whic…

Rapid prototypingInfection riskMaterials sciencePoly(methyl methacrylate)General Chemical EngineeringSacrificial layer assisted manufacturingMicrofluidicsNanotechnology02 engineering and technology01 natural scienceschemistry.chemical_compoundkerfMedical wastePoly(lactic acid)Environmental ChemistryChemical Engineering (all)Laser ablationSingle useLayer by layerRapid prototypingRenewable Energy Sustainability and the Environment010401 analytical chemistryChemistry (all)Settore ING-IND/34 - Bioingegneria IndustrialeGeneral ChemistryCO2 laser cut021001 nanoscience & nanotechnologyPoly(methyl methacrylate)0104 chemical sciencesLactic acidPoint of careMicromachiningchemistryMicrofluidicvisual_artvisual_art.visual_art_medium0210 nano-technology
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