Search results for "Electrical resistivity and conductivity"

showing 10 items of 317 documents

ChemInform Abstract: NbNi2.38Te3, a New Metal-Rich Niobium Telluride with a “Stuffed” TaFe1+ xTe3 Structure.

2010

The authors report the synthesis, structure, and electrical properties of NbNi{sub 2.38}Te{sub 3}. The structure of the compound was determined by X-ray crystallography and the electric conductivity of the compound was measured.

MetalCrystallographychemistry.chemical_compoundchemistryElectrical resistivity and conductivityvisual_artTellurideMetallurgyvisual_art.visual_art_mediumNiobiumchemistry.chemical_elementGeneral MedicineChemInform
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High frequency resistivity in La2-xSrxCu1-yCoyO4 ceramics

2019

Resitivity measurements have been performed in La:Sr:Cu:Co:O ceramics in a frequency range from 5Hz – 10 9 Hz. A strongly frequency dependent resistance has been observed in La 2 CUO 4 which we interpret in terms of a smooth dielectric to metal transition due to localization effects.

MetalMaterials scienceCondensed matter physicsElectrical resistivity and conductivityvisual_artvisual_art.visual_art_mediumEnergy Engineering and Power TechnologyDielectricCeramicElectrical and Electronic EngineeringCondensed Matter PhysicsElectronic Optical and Magnetic Materials
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Electrical Bistability around Room Temperature in an Unprecedented One-Dimensional Coordination Magnetic Polymer

2013

The synthesis, crystal structure, and physical properties of an unprecedented one-dimensional (1D) coordination polymer containing [Fe2(S2C6H2Cl2)4](2-) entities bridged by dicationic [K2(μ-H2O)2(THF)4](2+) units are described. The magnetic properties show that the title compound presents pairwise Fe-Fe antiferromagnetic interactions that can be well reproduced with a S = 1/2 dimer model with an exchange coupling, J = -23 cm(-1). The electrical conductivity measurements show that the title compound is a semiconductor with an activation energy of about 290 meV and two different transitions, both with large hysteresis of about 60 and 30 K at 260-320 K and 350-380 K, respectively. These two tr…

Models MolecularCalorimetry Differential ScanningMolecular StructurePolymersCoordination polymerbusiness.industryTemperatureElectronsCrystal structureActivation energyInorganic Chemistrychemistry.chemical_compoundHysteresisCrystallographyMagnetic FieldsDifferential scanning calorimetrySemiconductorchemistryElectrical resistivity and conductivityOrganometallic CompoundsAntiferromagnetismPhysical and Theoretical ChemistrybusinessInorganic Chemistry
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Cluster organization and pore structure of ion channels formed by beticolin 3, a nonpeptidic fungal toxin

1999

Beticolin 3 (B3) belongs to a family of nonpeptidic phytotoxins produced by the fungus Cercospora beticola, which present a broad spectrum of cytotoxic effects. We report here that, at cytotoxic concentration (10 microM), B3 formed voltage-independent, weakly selective ion channels with multiple conductance levels in planar lipid bilayers. In symmetrical standard solutions, conductance values of the first levels were, respectively, 16 +/- 1 pS, 32 +/- 2 pS, and 57 +/- 2 pS (n = 4) and so on, any conductance level being roughly twice the lower one. Whether a cluster organization of elementary channels or different channel structures underlies this particular property was addressed by investi…

Models Molecular[SDV]Life Sciences [q-bio]Lipid BilayersMolecular ConformationBiophysicsIn Vitro Techniques010402 general chemistryHeterocyclic Compounds 4 or More Rings01 natural sciencesBiophysical PhenomenaIon ChannelsMembrane Potentials03 medical and health sciencesElectrical resistivity and conductivityCluster (physics)Lipid bilayerIon channelComputingMilieux_MISCELLANEOUS030304 developmental biologyMembrane potential0303 health sciencesChemistryElectric ConductivityConductanceBiological activityMycotoxins0104 chemical sciencesCrystallographySelectivityResearch Article
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Alternating-Current Properties of Elastomer-Carbon Nanocomposites

2004

NanocompositeMaterials sciencechemistry.chemical_elementDissipationCondensed Matter PhysicsElastomerlaw.inventionchemistrylawElectrical resistivity and conductivityPercolationPolymer compositesGeneral Materials ScienceComposite materialAlternating currentCarbonAdvanced Engineering Materials
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Single cigar-shaped nanopores functionalized with amphoteric amino acid chains: experimental and theoretical characterization.

2012

We present an experimental and theoretical characterization of single cigar-shaped nanopores with pH-responsive carboxylic acid and lysine chains functionalized on the pore surface. The nanopore characterization includes (i) optical images of the nanostructure obtained by FESEM; (ii) different chemical procedures for the nanopore preparation (etching time and functionalizations; pH and electrolyte concentration of the external solution) allowing externally tunable nanopore responses monitored by the current-voltage (I-V) curves; and (iii) transport simulations obtained with a multilayer nanopore model. We show that a single, approximately symmetric nanopore can be operated as a reconfigurab…

NanoporeRe-configurablePHAmino acid chainsEtching timeElectrical signalCarboxylic AcidsGeneral Physics and AstronomyFunctionalizationsElectrolytePore surfaceElectrochemistryFunctionalizedCarboxylic acidOptical imageNanoporesElectric conductivityI - V curveElectrochemistryGeneral Materials ScienceTheoretical modelRectifying behaviorsFundamental conceptsRectifying propertiesSurface propertyGeneral EngineeringHydrogen-Ion ConcentrationCigar-shaped nanoporeCharacterization (materials science)Data processingChemistryNanoporeAmino acidsIon channelTransport simulationIodineLogic functionsNanostructureMaterials scienceLogicSurface PropertiesCharacterizationNanotechnologyTunabilitiesArticleDrug controlled releaseElectrical resistivity and conductivityEtchingTransport processPH-responsiveCurrent voltage curveDiodeChemical proceduresCarboxylic acidsLysineElectric ConductivityModels TheoreticalGeometrical opticsNanostructuresAmphoteric amino acid chainsCurrent-voltage curvesExternal solutionsFISICA APLICADAElectrolyte concentrationACS nano
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Current rectification by nanoparticle blocking in single cylindrical nanopores.

2014

Blocking of a charged pore by an oppositely charged nanoparticle can support rectifying properties in a cylindrical nanopore, as opposed to the usual case of a fixed asymmetry in the pore geometry and charge distribution. We present here experimental data and model calculations to confirm this fundamental effect. The nanostructure imaging and the effects of nanoparticle concentration, pore radius, and salt concentration on the electrical conductance–voltage (G–V) curves are discussed. Logic responses based on chemical and electrical inputs/outputs could also be implemented with a single pore acting as an effective nanofluidic diode. To better show the generality of the results, different ch…

NanostructureMaterials scienceNanoparticleIonic bondingTransportNanotechnologyElectronQuantitative Biology::Subcellular ProcessesNanoporesRectificationElectrical resistivity and conductivityGeneral Materials ScienceQuantitative Biology::BiomoleculesMembranesPolyethylene TerephthalatesElectric ConductivityCharge densityAntibiotic moleculesNanoporePoresChemical physicsIon channelsFISICA APLICADAMicroscopy Electron ScanningNanoparticlesGradientNanoscale
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Nanoindentation and photoluminescence characterization of ZnO thin films and single crystals

2010

In this work an optical and micromechanical properties of ZnO films deposited on glass by simple method based on the mechanoactivated oxidation have been investigated and compared with those of bulk ZnO single crystal and commercial ZnO films. Results showed that investigated ZnO films have stable high adhesion with glass and can form grained structure with hardness 8–10 GPa or whiskers nanostructure with high hardness 18–20 GPa. Young’s modulus is in range from 80 to 120 GPa. Optical properties of obtained ZnO films with whiskers structure are typical for transparent high quality ZnO single crystal. These coatings also exhibit a photo-electric response which reflects on the change in resis…

NanostructureMaterials sciencePhotoluminescenceWhiskersOrganic ChemistryMineralogyModulusNanoindentationAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic MaterialsInorganic ChemistryElectrical resistivity and conductivityElectrical and Electronic EngineeringPhysical and Theoretical ChemistryComposite materialThin filmSingle crystalSpectroscopyOptical Materials
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TCNQ radical salts containing magnetic complexes: Different interaction modes of TCNQ with Copper tetraazamacrocycles

1997

Abstract This work is devoted to the study of compounds [M(N 4 )](TCNQ) n , where N 4 = saturated or unsaturated tetraazamacrocycles, TCNQ= 7,7,8,8-tetracyanoquinodimethane, n= 2, 3. The metal is coordinated to two TCNQ groups only when there is coordinative unsaturation on it. When n= 2 all the TCNQ units are radical anions and no charge delocalization is observed. In the compounds with n= 3 only 2 3 of the TCNQ are negatively charged and a greater charge delocalization is possible. This delocalization only appears when none of the TCNQ's are coordinated to the metal and it is reflected in the higher conductivity values obtained in the solid state.

NitrilebiologyChemistryMechanical EngineeringInorganic chemistryMetals and Alloyschemistry.chemical_elementConductivityCondensed Matter PhysicsCopperMagnetic susceptibilityElectronic Optical and Magnetic MaterialsMetalchemistry.chemical_compoundCrystallographyDelocalized electronMechanics of MaterialsElectrical resistivity and conductivityvisual_artMaterials Chemistryvisual_art.visual_art_mediumbiology.proteinOrganic anionSynthetic Metals
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Ion irradiation of AZO thin films for flexible electronics

2017

Aluminum doped Zinc oxide (AZO) is a promising transparent conductor for solar cells, displays and touch-screen technologies. The resistivity of AZO is typically improved by thermal annealing at temperatures not suitable for plastic substrates. Here we present a non-thermal route to improve the electrical and structural properties of AZO by irradiating the TCO films with O+ or Ar+ ion beams (30–350 keV, 3 × 1015–3 × 1016 ions/cm2) after the deposition on glass and flexible polyethylene naphthalate (PEN). X-ray diffraction, optical absorption, electrical measurements, Rutherford Backscattering Spectrometry and Atomic Force Microscopy evidenced an increase of the crystalline grain size and a …

Nuclear and High Energy PhysicsMaterials science02 engineering and technology01 natural sciencesSettore ING-INF/01 - ElettronicaSettore FIS/03 - Fisica Della MateriaOpticsTransparent conductive oxideElectrical resistivity and conductivity0103 physical sciencesAZO ; Transparent conductive oxide ; Ion implantationElectrical measurementsThin filmPolyethylene naphthalateFlexible and transparent electronicInstrumentationTransparent conducting filmNuclear and High Energy Physic010302 applied physicsbusiness.industryAZO021001 nanoscience & nanotechnologyRutherford backscattering spectrometryIon implantationIon implantationOptoelectronicsCrystallite0210 nano-technologybusinessPhotovoltaic
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