High-pressure high-temperature solution growth, structural, and superconducting properties of Fe-substituted MgB2 single crystals
arXiv:2505.16432 · doi:10.1016/j.jcrysgro.2025.128244
Abstract
Clarifying the impact of Fe doping on the structural and superconducting properties of MgB2 is crucial, considering that iron is commonly used as a sheath material for the fabrication of metal-clad MgB2 wires and tapes. To date the effects of Fe doping have only been investigated in polycrystalline samples, but the obtained results are controversial. Here, we report the successful growth of Mg1-xFexB2 single crystals in a quaternary Mg-Fe-B-N system using the cubic anvil high-pressure and high-temperature technique. The reaction took place in a closed boron nitride crucible at a pressure of 3 GPa and a temperature of 1960 °C. The grown crystals exhibit plate-like shapes with sizes up to 0.9 x 0.7 x 0.1 mm3. The variation of the critical temperature Tc of Mg1-xFexB2 crystals with Fe content was found to be different from that observed in polycrystalline samples. For a small Fe doping, up to x < 0.03, the behaviour of Tc(x) is similar to that for the crystals with Al and C substitutions, which suggests that Fe is in non-magnetic state. In this doping range, measurements of the temperature-dependent magnetization performed in high magnetic fields exclude spin states other than S = 0 for the Fe ions. However, for x > 0.03, certain crystals start to show a dramatic decrease in Tc, suggesting that Fe might be in a magnetic state. The M-H dependence for these crystals shows significant increase of magnetization with increasing field in low magnetic field, pointing to a weak ferromagnetism. Overall, the availability of Fe substituted MgB2 single crystals exhibiting such peculiar behaviour offers a unique opportunity to investigate the effect of disorder alone on one hand and the influence of magnetic substituent on the superconducting characteristics on the other.
References in corpus (19)
- Carbon substitution in MgB2 single crystals: structural and superconducting properties
- Al substitution in MgB2 crystals: influence on superconducting and structural properties
- High-pressure flux growth, structural, and superconducting properties of LnFeAsO (Ln = Pr, Nd, Sm) single crystals
- Crystal growth of hexagonal boron nitride (hBN) from Mg-B-N solvent system under high pressure
- Crystal growth, structural studies and superconducting properties of beta-pyrochlore KOs2O6
- Anharmonic effects in MgB2? A comparative inelastic X-ray scattering and Raman study
- Scanning Tunneling Spectroscopy on Single Crystal MgB2
- MgB2 single crystals substituted with Li and with Li-C: Structural and superconducting properties
- Multi-Gap Superconductivity in MgB2: Magneto-Raman Spectroscopy
- Spontaneous growth of diamond from MnNi solvent-catalyst using opposed anvil-type high-pressure apparatus
- High pressure crystal growth of the antiperovskite centrosymmetric superconductor SrPt3P
- Growth of bulk single-crystal MnP helimagnet and its structural and NMR characterization
- High-pressure growth and characterization of bulk MnAs single crystals
- High-pressure synthesis and superconductivity of Ca2-xNaxCuO2Cl2
- Study of the in-plane magnetic penetration depth in the cuprate superconductor Ca_2-xNa_xCuO_2Cl_2: role of the apical sites
- Exploring 2D Materials by High Pressure Synthesis: hBN, Mg-hBN, b-P, b-AsP, and GeAs
- Crystal growth and characterization of the antiperovskite superconductor MgC1-xNi3-y
- High-pressure hydrothermal growth and characterization of Sr3Os4O14 single crystals
- Influence of the carbon substitution on the critical current density and AC losses in MgB2 single crystals