Growth of superconducting Sm(O,F)BiS2 single crystals
arXiv:1911.02337 · doi:10.1021/acs.cgd.9b00451
Abstract
Superconducting Sm(O,F)BiS2 single crystals were successfully grown using KI-KCl flux. The obtained single crystals were flat-shaped and their size was 500um. The structure and composition of the obtained single crystals were obtained using X-ray diffraction and X-ray spectroscopy. The lattice constants of the obtained Sm(O,F)BiS2 single crystals were evaluated to be a = 3.9672(4) A and c = 13.417(6) A, while their F/(O + F) molar ratio was approximately 0.17. The superconducting transition temperature of the obtained Sm(O,F)BiS2 single crystals was 4.8 K. This was different from the reported Sm(O,F)BiS2 with no superconducting transition above 2 K. The superconducting anisotropies of the upper critical field and effective mass model of the obtained Sm(O,F)BiS2 single crystals were estimated to be approximately 26 and 10, respectively.
22 pages, 7 figures
References in corpus (4)
- Superconductivity Appears in the Vicinity of an Insulating-Like Behavior in CeOFBiS
- Superconductivity of F-substituted LnOBiS2 (Ln = La, Ce, Pr, Nd, Yb) compounds
- Superconductivity in CeOBiS2 with cerium valence fluctuation
- Superconductivity and its Enhancement under High Pressure in "F-free" Single Crystals of CeOBiS
Cited by in corpus (5)
- Effects of equivalent composition on superconducting properties of high-entropy REOBiS (RE = La, Ce, Pr, Nd, Sm, Gd) single crystals
- Fluorine solubility and superconducting properties of Sm(O,F)BiS single crystals
- Pb Substitution Effects on Lattice and Electronic System of the BiS2-based Superconductors La(O F)BiS2
- Suppression of superconductivity by Sb-substitution into CeOBiS2 single crystals
- Investigation of superconductivity in Ce-doped (La,Pr)OBiS2 single crystals