Superconductivity in the -carbide-type oxides Zr4Rh2Ox
arXiv:1905.07402 · doi:10.1016/j.jallcom.2019.04.318
Abstract
We report on the synthesis and the superconductivity of ZrRhO ( = 0.4, 0.5, 0.6, 0.7, 1.0). These compounds crystallize in the -carbide structure, which is a filled version of the complex intermetallic TiNi structure. We find that in the system ZrRhO, already a small amount ( 0.4) of oxygen addition stabilizes the -carbide structure over the more common intermetallic CuAl structure-type, in which ZrRh crystallizes. We show that ZrRhO and ZrRhO are bulk superconductors with critical temperatures of 2.8 K and 4.7 K in the resistivity, respectively. Our analysis of the superconducting properties reveal both compounds to be strongly type-II superconductors with critical fields up to (0) 8.8 mT and (0) 6.08 T. Our results support that the -carbides are a versatile family of compounds for the investigation of the interplay of interstitial doping on physical properties, especially for superconductivity.
References in corpus (2)
Cited by in corpus (4)
- Superconductivity with High Upper Critical Field in the Cubic Centrosymmetric -Carbide NbRhC
- Superconductivity with a Violation of Pauli Limit and Evidences for Multigap in -Carbide type TiIrO
- Discovery of the Type-II Superconductor TaRhC with a High Upper Critical Field
- Structure, Composition, and High-Field Superconductivity in Metal-Rich -Carbide-Type Compounds