Search results for "magnetic material"

showing 10 items of 4725 documents

Structural characterization of U(VI) surface complexes on kaolinite in the presence of humic acid using EXAFS spectroscopy.

2007

To determine the influence of humic acid (HA), pH, and presence of atmospheric CO2 on the sorption of U(VI) onto kaolinite, the structure of the surface complexes was studied by U L III-edge extended X-ray absorption fine structure (EXAFS) spectroscopy. The best fits to the experimental EXAFS data were obtained by including two uranium coordination shells with two axial (O ax) and five equatorial (O eq) oxygen atoms at 1.77+/-0.02 and 2.34+/-0.02 A, respectively, and two coordination shells with one Al/Si atom each at 3.1 and 3.3 A. As in the case of the binary system U(VI)-kaolinite, uranium forms inner-sphere surface complexes by edge sharing with aluminum octahedra and/or silicon tetrahe…

chemistry.chemical_classificationsorptionkaoliniteExtended X-ray absorption fine structureAnalytical chemistrySorptionhumic acidSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsBiomaterialsEXAFSColloid and Surface ChemistryAdsorptionchemistryX-ray photoelectron spectroscopyuranium(VI)XPSHumic acidKaoliniteAbsorption (chemistry)surface complexesSpectroscopyJournal of colloid and interface science
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Cationic Au Nanoparticle Binding with Plasma Membrane-like Lipid Bilayers: Potential Mechanism for Spontaneous Permeation to Cells Revealed by Atomis…

2014

Despite being chemically inert as a bulk material, nanoscale gold can pose harmful side effects to living organisms. In particular, cationic Au nanoparticles (AuNP+) of 2 nm diameter or less permeate readily through plasma membranes and induce cell death. We report atomistic simulations of cationic Au nanoparticles interacting with realistic membranes and explicit solvent using a model system that comprises two cellular compartments, extracellular and cytosolic, divided by two asymmetric lipid bilayers. The membrane-AuNP+ binding and membrane reorganization processes are discovered to be governed by cooperative effects where AuNP+, counterions, water, and the two membrane leaflets all contr…

chemistry.chemical_classificationta114ta221Cationic polymerizationNanoparticlePermeationSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsGeneral EnergyMembranechemistryExtracellularBiophysicsOrganic chemistryPhysical and Theoretical ChemistryCounterionLipid bilayerta116Cellular compartment
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Optical Absorption of Zinc Selenide Doped with Cobalt (Zn1-xCoxSe) under Hydrostatic Pressure

2000

Optical absorption of the diluted magnetic semiconductor Zn 1-x Co x Se (x = 0.02) has been measured at room temperature under hydrostatic pressure up to 14 GPa in a membrane diamond-anvil cell. We found two absorption features: (i) an absorption structure in the energy range 1.5 to 1.8 eV, with a negligible pressure shift (i.e. (0.45 ± 0.05) meV/GPa) which we have identified as the Co 2+ (3d 7 ) internal transition 4 A 2 (F) → 4 T 1 (P) and (ii) an onset in the energy range 2 to 2.7 eV which redshifts with pressure (dE/dP = (-8.1 ± 0.6) meV/GPa). We have attributed such absorption edge to charge transfer between the ZnSe valence band and the Co 2+ (3d 7 ) levels. On the assumption that tho…

chemistry.chemical_compoundAbsorption spectroscopyAbsorption edgeChemistryHydrostatic pressureDopingAnalytical chemistryZinc selenideMagnetic semiconductorCondensed Matter PhysicsAbsorption (electromagnetic radiation)Diamond anvil cellElectronic Optical and Magnetic Materialsphysica status solidi (a)
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Divide and Protect: Passivating Cu(111) by Cu-(benzotriazole)2

2012

Binding of benzotriazolate anion (BTA) to copper complexes and Cu(111) surface was investigated by density functional theory calculations. [BTACuBTA]1– was found to be a very stable complex that BT...

chemistry.chemical_compoundGeneral EnergyBenzotriazoleta114ChemistryInorganic chemistrychemistry.chemical_elementDensity functional theoryPhysical and Theoretical ChemistryCopperSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsIonThe Journal of Physical Chemistry C
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DFT Study on the Complex Reaction Networks in the Conversion of Ethylene to Ethylidyne on Flat and Stepped Pd

2009

Adsorption and conversion of ethylene to ethylidyne on flat (111) and stepped Pd surfaces have been studied with the aim to unravel the complex chemistry of small organic molecules on Pd. These pro...

chemistry.chemical_compoundGeneral EnergyEthyleneAdsorptionchemistryComplex chemistryPhysical and Theoretical ChemistryPhotochemistrySurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsOrganic moleculesThe Journal of Physical Chemistry C
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Amorphous polyphosphate nanoparticles: application of the morphogenetically active inorganic polymer for personalized tissue regeneration

2019

chemistry.chemical_compoundInorganic polymerAcoustics and UltrasonicschemistryChemical engineeringPolyphosphateNanoparticleCondensed Matter PhysicsSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsAmorphous solidJournal of Physics D: Applied Physics
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Effects of VTE Treatment on Composition of Lithium Tantalate Single Crystals

2011

The vapour transport equilibration (VTE) is used to change the Li/Ta ratio in lithium tantalate single crystals of different crystallographic orientations (Z-cut and Y/128°-cut). Treatment by VTE is shown to provide thin layers in lithium tantalate plates composition of which is close to stoichiometric while the values of the coercive field are different, much smaller compared with congruent single crystals. There are several mechanisms of diffusion of the Li+ ions in LiTaO3 under conditions of VTE the contribution of each being dependent on the crystallographic orientation of the sample.

chemistry.chemical_compoundMaterials scienceThin layerschemistryDiffusionLithium tantalateAnalytical chemistryCoercivityCondensed Matter PhysicsStoichiometryElectronic Optical and Magnetic MaterialsIonFerroelectrics
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The Effects of Admixtures on Resistance to Radiation of Lithium Niobate Crystals

2015

The studies of optical absorption and transmission of crystalline lithium niobate compounds modified by rare-earth and alkali-earth elements: LiNbO3: Y (0.46 wt %), LiNbO3: Y (0.32 wt %), Mg (0.24 wt %), LiNbO3: Mg (0.27 wt %), LiNbO3: Gd (0.004, 0.04, 0.26, and 0.43 wt %), and ostensibly pure LiNbO3 is reported. The features of absorption and transmission are examined with respect to the dosage of γ-irradiation, the annealing temperature, and the type and concentration of modifying admixtures. The features revealed in different ways of bleaching γ-irradiated and annealed in vacuum ostensibly pure lithium niobate crystals are used to refine the mechanisms of developing electron and point de…

chemistry.chemical_compoundMaterials sciencechemistryAnnealing (metallurgy)Lithium niobateAnalytical chemistryElectronRadiationCondensed Matter Physicsγ irradiationOn resistanceCrystallographic defectElectronic Optical and Magnetic MaterialsFerroelectrics
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Process Development for Wet-Chemical Surface Functionalization of Gallium Arsenide Based Nanowires

2019

chemistry.chemical_compoundMaterials sciencechemistryProcess developmentNanowireSurface modificationNanotechnologyCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsGallium arsenideElektrotechnik
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On lead-scandium tantalate solid solutions with high electrocaloric effect

1992

Abstract The PbSc0,5Ta0,5O3 solutions are found to be a useful material for active elements of microcryogenic devices based on electrocaloric effect. A temperature difference of ΔT = 1. 0-1.8 K at field intensities 20–30 kV/cm in the interval of 210–310 K can be achieved by simultaneous or separate introducing of Sb and Co ions in B-sites of the lattice. The most important contribution to the electrocaloric effect is due to field-induced Fn3m → R3m phase transition in the case of high ordering of B-ions in the perovskite structure ABO3.

chemistry.chemical_compoundPhase transitionMaterials sciencechemistryCondensed matter physicsLattice (order)Lead scandium tantalateElectrocaloric effectTemperature differenceCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsSolid solutionFerroelectrics
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