CrystEngComm · 2011 · 31 citations · 23 references
Superconducting MaterialEngineeringBismuth-based SuperconductorsCrystal Growth TechnologyGrain BoundariesNovel SuperconductorsMetallic Functional MaterialSuperconductivityHigh Tc SuperconductorsHigh PressureConductivity EnhancementMaterials ScienceMaterials EngineeringLow-temperature SuperconductivityHigh-tc SuperconductivitySingle-crystal CopperPhysicsMetallurgical InteractionElemental MetalMicrostructureHigh Temperature MaterialsDebye TemperatureHigh-temperature SuperconductivityApplied PhysicsCondensed Matter PhysicsBitter MagnetsMetallurgical System
The scientific community has attempted to fabricate superconductors that work at room temperature; however, this goal has not yet been achieved. Considering miniaturization of devices and the requirement of low-power consumption in electronics, it is important to enhance room-temperature conductivity. We prepared the best conductor using crystallization and enhanced its conduction using high-pressure annealing. Single-crystal copper showed a conductivity enhancement of 12–14% after treatment under high pressure and temperature compared with that of oxygen-free copper, which has the highest conductivity for a metal. The contribution of grain boundaries to the Debye temperature was calculated and the phonon excitation was maximized at a lower temperature in grain-free copper. This study aimed to develop a new conductor, in which phonon–electron scattering is reduced at high temperatures. Single-crystal copper could be used for large-scale production of Bitter magnets to generate a high magnetic field and for applications of crystal engineering.
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Ultrahigh Strength and High Electrical Conductivity in Copper
Lei Lu, Y.F. Shen, Xianhua Chen et al. · Science · 2004 · 3.2K citations
Engineering, Severe Plastic Deformation, Mechanical Engineering +16