Annealing Effect on Microstructure and Superconductivity of KxFeySe2 Synthesized by an Easy One-step Method
arXiv:1401.6906 · doi:10.1007/s10909-014-1097-5
Abstract
High-quality superconducting KxFeySe2 single crystals were synthesized using an easy one-step method. Detailed annealing studies were performed to make clear the phase formation process in KxFeySe2. Compatible observations were found in temperature-dependent X-ray diffraction patterns, back-scattered electron images and corresponding electromagnetic properties, which proved that good superconductivity performance was close related to the microstructure of superconducting component. Analysis based on the scaling behavior of flux pinning force indicated that the dominant pinning mechanism was delta(Tc) pinning and independent of connectivity. The annealing dynamics studies were also performed, which manifested that the humps in temperature-dependent resistance (RT) curves were induced by competition between the metallic/superconducting and the semiconducting/insulating phases.
References in corpus (14)
- Fe-based high temperature superconductivity with Tc=31K bordering an insulating antiferromagnet in (Tl,K)FexSe2 Crystals
- Superconductivity at 32 K in single crystal RbFeSe}
- Intrinsic phase separation in superconducting K0.8Fe1.6Se2 (Tc= 31.8 K) single crystals
- KFe_2Se_2 is the parent compound of K-doped iron selenide superconductors
- Influence of microstructure on superconductivity in KFeSe and evidence for a new parent phase KFeSe
- Neutron-Diffraction Measurements of an Antiferromagnetic Semiconducting Phase in the Vicinity of the High-Temperature Superconducting State of KFeSe
- Evolution of precipitate morphology during heat treatment and its implications for the superconductivity in KxFe1.6+ySe2 single crystals
- Anisotropy in transport and magnetic properties of K0.64Fe1.44Se2
- Crystal structure, physical properties and superconductivity in FeSe single crystals
- Overview on the physics and materials of the new superconductor KxFe2-ySe2
- Metastable superconducting state in quenched KxFe2-ySe2
- One-step synthesis of KxFe2-ySe2 single crystals for high critical current density
- Coexistence of different electronic phases in the K0.8Fe1.6Se2 superconductor: a bulk-sensitive hard x-rays spectroscopy study
- Evolution of superconductivity in isovalent Te-substituted KxFe2-ySe2 crystals