Fabrication and characterization of iron pnictide wires and bulk materials through the powder-in-tube method
arXiv:0906.3114 · doi:10.1016/j.physc.2009.03.024
Abstract
The recent discovery of superconductivity in the iron based superconductors with very high upper critical fields presents a new possibility for practical applications, but fabricating fine-wire is a challenge because of mechanically hard and brittle powders and the toxicity and volatility of arsenic. In this paper, we report the synthesis and the physical characterization of iron pnictide wires and bulks prepared by the powder-in-tube method (PIT). A new class of high-Tc iron pnictide composite wires, such as LaFeAsO1-xFx, SmFeAsO1-xFx and Sr1-xKxFeAs, has been fabricated by the in situ PIT technique using Fe, Ta and Nb tubes. Microscopy and x-ray analysis show that the superconducting core is continuous, and retains phase composition after wire drawing and heat treatment. Furthermore, the wires exhibit a very weak Jc-field dependence behavior even at high temperatures. The upper critical field Hc2(0) value can exceed 100 T, surpassing those of MgB2 and all the low temperature superconductors and indicating a strong potential for applications requiring very high field. These results demonstrate the feasibility of producing superconducting pnictide composite wire. We also applied the one step PIT method to synthesize the iron-based bulks, due to its convenience and safety. In fact, by using this technique, we have successfully discovered superconductivity at 35 K and 15 K in Eu0.7Na0.3Fe2As2 and SmCoFeAsO compounds, respectively. These clearly suggest that the one-step PIT technique is unique and versatile and hence can be tailored easily for other rare earth derivatives of novel iron-based superconductors.
Review for the special issue of Physica C on iron-based pnictide superconductors
References in corpus (14)
- Superconductivity at 43 K in Samarium-arsenide Oxides
- Spin density wave anomaly at 140 K in the ternary iron arsenide BaFe2As2
- Superconductivity in iron-based F-doped layered quaternary compound Nd[O1-xFx]FeAs
- Very High Field Two-Band Superconductivity in LaFeAsO_0.89F_0.11
- Superconductivity at 25 K in hole doped
- Fishtail effect and the vortex phase diagram of single crystal Ba0.6K0.4Fe2As2
- Superconducting properties of Fe-based layered superconductor LaOFFeAs
- Upper critical fields well above 100 T for the superconductor SmFeAsOF with T = 46 K
- Evidence for two distinct scales of current flow in polycrystalline Sm and Nd iron oxypnictides
- Superconducting properties of SmO1-xFxFeAs wires with Tc = 52 K prepared by the powder-in-tube method
- Superconductivity at 34.7 K in the iron arsenide Eu0.7Na0.3Fe2As2
- Superconductivity in Co-doped SmFeAsO
- Structural and critical current properties in polycrystalline SmO1-xFxFeAs
- Evidence for Supercurrent Connectivity in Conglomerate Particles in NdFeAsO1-d
Cited by in corpus (15)
- Superconductivity in Iron Compounds
- Recent advances in iron-based superconductors toward applications
- Exploration of new superconductors and functional materials and fabrication of superconducting tapes and wires of iron pnictides
- High intergrain critical current density in fine-grain (Ba0.6K0.4)Fe2As2 wires and bulks
- Progress in wire fabrication of iron-based superconductors
- Large transport critical currents of powder-in-tube Sr0.6K0.4Fe2As2/Ag superconducting wires and tapes
- High transport Jc in magnetic fields up to 28 T of stainless steel/Ag double sheathed Ba122 tapes fabricated by scalable rolling process
- Mechanochemical synthesis of pnictide compounds and superconducting Ba0.6K0.4Fe2As2 bulks with high critical current density
- Development of Powder-in-Tube Processed Iron Pnictide Wires and Tapes
- Low-temperature synthesis of SmFeAsO0.7F0.3 wires with high transport critical current density
- Low-temperature synthesis of SmO0.8F0.2FeAs superconductor with Tc = 56.1K
- Influence of Pb addition on the superconducting properties of polycrystalline Sr0.6K0.4Fe2As2
- Effect of columnar defects on the pinning properties of NdFeAsO0.85 conglomerate particles
- Effect of starting materials on the superconducting properties of SmFeAsO1-xFx tapes
- High critical current density and low anisotropy in textured Sr1-xKxFe2As2 tapes for high field applications