Search results for "composites"

showing 10 items of 1905 documents

Energy Storage: Giant Enhancement in the Supercapacitance of NiFe–Graphene Nanocomposites Induced by a Magnetic Field (Adv. Mater. 28/2019)

2019

SupercapacitorNanocompositeMaterials scienceGraphene nanocompositesMechanics of MaterialsMechanical EngineeringGeneral Materials ScienceNanotechnologyEnergy storageMagnetic fieldAdvanced Materials
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Metal–Metal Distances, Electron Counts, and Superconducting TC's in AM2B2C

2001

Abstract We present first principles band structure calculations on representative boron carbides belonging to the class of superconducting compounds with the general formula AM 2 B 2 C with A =Lu, La, or Th and M =Ni or Pd. The compounds are analyzed within the framework of the so-called van Hove scenario, where superconductivity is linked to certain kinds of instabilities in the band structure. We attempt to determine why the addition of the extra electron on replacing the rare earth with Th does not make a significant difference to the superconducting properties, and why the compound LaNi 2 B 2 C is not superconducting.

SuperconductivityCondensed matter physicsChemistryRare earthVan Hove singularityElectronic structureElectronCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsInorganic ChemistryChemical bondCondensed Matter::SuperconductivityMaterials ChemistryCeramics and CompositesMetal metalPhysical and Theoretical ChemistryElectronic band structureJournal of Solid State Chemistry
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Giant Negative Magnetoresistance in GdI2: Prediction and Realization

1999

The electronic structure of the layered d1 compound GdI2 has been examined systematically in view of its relation to other layered d1 systems including superconducting and isostructural 2H-TaS2 and 2H-NbSe2. A van Hove type instability is evident in suitable representations of the Fermi surface. The presence of the half-filled and magnetic 4f level should preclude the possibility of superconductivity. Instead GdI2 orders ferromagnetically at 290(5) K and displays large negative magnetoresistance ≈70% at 7 T close to room temperature. This finding provides support to the idea that materials can be searched rationally for interesting properties through high level electronic structure calculat…

SuperconductivityCondensed matter physicsMagnetoresistanceChemistryGiant magnetoresistanceFermi surfaceElectronic structureCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsInorganic ChemistryMaterials ChemistryCeramics and CompositesDensity of statesPhysical and Theoretical ChemistryMetal–insulator transitionElectronic band structureJournal of Solid State Chemistry
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Superconducting Microwave Cavity Made of Bulk MgB2

2006

We report the successful manufacture and characterization of a microwave resonant cylindrical cavity made of bulk MgB2 superconductor (Tc = 38.5 K), which has been produced by the Reactive Liquid Mg Infiltration technique. The quality factor of the cavity for the TE011 mode, resonating at 9.79 GHz, has been measured as a function of the temperature. At T = 4.2 K, the unloaded quality factor is 2.2x10^5; it remains of the order of 10^5 up to T ~ 30 K. We discuss the potential performance improvements of microwave cavities built from bulk MgB2 materials produced by reactive liquid Mg infiltration.

SuperconductivityMaterials scienceCondensed matter physicsCondensed Matter - SuperconductivitySettore FIS/01 - Fisica SperimentaleMetals and AlloysFOS: Physical sciencesCondensed Matter PhysicsInfiltration (HVAC)Superconductivity (cond-mat.supr-con)INFILTRATIONMaterials ChemistryCeramics and CompositesMAGNESIUM DIBORIDEElectrical and Electronic EngineeringMicrowaveMicrowave cavity
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Corrigendum: The quantum phase slip phenomenon in superconducting nanowires with a low-Ohmic environment

2013

SuperconductivityMaterials scienceCondensed matter physicsMaterials ChemistryMetals and AlloysCeramics and CompositesNanowirePhase slipElectrical and Electronic EngineeringCondensed Matter PhysicsOhmic contactQuantumSuperconductor Science and Technology
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Interface transparency and proximity effect in Nb/Cu triple layers realized by sputtering and molecular beam epitaxy

2004

We have investigated, in the framework of the proximity effect theory, the interface transparency T between Nb and Cu in the case of high quality Nb/Cu trilayers fabricated by molecular beam epitaxy (MBE) and sputtering deposition techniques. The obtained T values do not seem to be strongly influenced by the fabrication methods but more by the intrinsic properties of the two metals; a slightly higher value for T has even been deduced for the MBE prepared samples. The proximity effect in these samples has also been studied in the presence of an external magnetic field. In the parallel configuration a significant shift towards lower values of the 2D–3D crossover temperature has been observed …

SuperconductivityMaterials scienceCondensed matter physicsMetals and AlloysNiobiumchemistry.chemical_elementSputter depositionCondensed Matter PhysicsEpitaxySettore FIS/03 - Fisica della MateriachemistrySputteringMaterials ChemistryCeramics and CompositesProximity effect (superconductivity)Electrical and Electronic EngineeringCritical fieldMolecular beam epitaxySuperconductor Science and Technology
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Vortex creep crossover in YBCO/PrBCO superlattices during standard magnetization relaxation measurements

2011

We investigated the relaxation of the irreversible magnetization in a series of 200?nm thick YBa2Cu3O7/PrBa2Cu3O7 [(YBCO)n/(PrBCO)m] superlattices, where the thickness m of the nonsuperconducting PrBCO layer (measured in unit cells) was kept to m = 4 (sufficient to decouple the superconducting YBCO layers), whereas the thickness n of the YBCO layer was varied between 2 and 20 unit cells. The analysis of standard zero-field-cooling dc magnetization relaxation data obtained in the low temperature T region with the applied magnetic field H oriented along the c axis reveals the occurrence of a crossover elastic (collective) vortex creep at low T?plastic vortex creep at high T, generated by the …

SuperconductivityMaterials scienceCondensed matter physicsSuperlatticeRelaxation (NMR)Metals and AlloysQuantum vortexCondensed Matter PhysicsVortexMagnetizationCreepCondensed Matter::SuperconductivityMaterials ChemistryCeramics and CompositesElectrical and Electronic EngineeringThin filmSuperconductor Science and Technology
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Size dependence of the Josephson critical behavior in pyrolytic graphite TEM lamellae

2014

We have studied the transport characteristics of TEM lamellae of different widths obtained from a graphite sample with electrical contacts at the edges of the embedded interfaces. The temperature dependence of the resistance, as well as the current-voltage characteristics, are compatible with the existence of Josephson-coupled superconducting regions. The transition temperature at which the Josephson behavior sets in decreases with a decreasing interface width and vanishes for widths below 200 nm. This interface-size dependence provides an explanation for differences observed in the transport behavior of graphite-based samples with interfaces, and it appears to be related to the influence o…

SuperconductivityMaterials scienceCondensed matter physicsTransition temperatureMetals and AlloysCondensed Matter PhysicsElectrical contactsWeak localizationCondensed Matter::SuperconductivitySuperconducting critical temperatureMaterials ChemistryCeramics and CompositesGraphitePyrolytic carbonElectrical and Electronic EngineeringSize dependenceSuperconductor Science and Technology
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On the determination of vortex creep parameters in superconductors using standard magnetization relaxation data

2011

The relaxation of the irreversible magnetic moment m(t) in YBa2Cu3O7 (YBCO) films was investigated as a function of temperature T and the external magnetic field H along the c axis applied in zero-field cooling conditions, for the determination of vortex creep parameters. The data analysis was performed using the T and current density dependence of the normalized vortex creep activation energy, or by the fit of the m(t) data with the well known interpolation formula in the framework of the general vortex creep equation. It was found that (i) even for specimens with strong static pinning the characteristic pinning energy remains small in the low-T range, where the vortex creep appearing in s…

SuperconductivityMaterials scienceMagnetic momentCondensed matter physicsRelaxation (NMR)Metals and AlloysCondensed Matter PhysicsPhysics::GeophysicsMagnetic fieldVortexMagnetizationCreepCondensed Matter::SuperconductivityMaterials ChemistryCeramics and CompositesElectrical and Electronic EngineeringCurrent densitySuperconductor Science and Technology
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Improvement of the critical current density of spark plasma sintered MgB2by C60addition

2010

We investigated the influence of fullerene (C60) addition on the superconducting parameters of MgB2 bulk samples obtained by spark plasma sintering (SPS). It was found that 1.5?wt% C60 addition leads to the reduction of the critical temperature by a few K, whereas the magnetically determined critical current density increases by approximately one order of magnitude in an applied magnetic field H = 70?kOe at temperature T = 10?K. This indicates substitution of B by C in C60 added MgB2 processed by SPS, contrary to some data reported in the literature obtained using conventional methods. For our relatively large specimens, the occurrence of macroscale flux jumps was observed over a wide (H, T…

SuperconductivityMaterials scienceMagnetic momentCondensed matter physicsRelaxation (NMR)Metals and AlloysSpark plasma sinteringFluxPlasmaCondensed Matter PhysicsMagnetizationCondensed Matter::SuperconductivityMaterials ChemistryCeramics and CompositesElectrical and Electronic EngineeringOrder of magnitudeSuperconductor Science and Technology
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