Novel polymorphic phase of BaCu2As2: impact of flux for new phase formation in crystal growth
arXiv:2008.09163 · doi:10.1021/acs.cgd.0c00614
Abstract
In this work, we have thoroughly studied the effects of flux composition and temperature on the crystal growth of the BaCu2As2 compound. While Pb and CuAs self-flux produce the well-known α-phase ThCr2Si2-type structure (Z=2), a new polymorphic phase of BaCu2As2 (\b{eta} phase) with a much larger c lattice parameter (Z=10), which could be considered an intergrowth of the ThCr2Si2- and CaBe2Ge2-type structures, has been discovered via Sn flux growth. We have characterized this structure through single-crystal X-ray diffraction, transmission electron microscopy (TEM), and scanning transmission electron microscopy (STEM) studies. Furthermore, we compare this new polymorphic intergrowth structure with the α-phase BaCu2As2 (ThCr2Si2 type with Z=2) and the \b{eta}-phase BaCu2Sb2 (intergrowth of ThCr2Si2 and CaBe2Ge2 types with Z=6), both with the same space group I4/mmm. Electrical transport studies reveal p-type carriers and magnetoresistivity up to 22% at 5 K and under a magnetic field of 7 T. Our work suggests a new route for the discovery of new polymorphic structures through flux and temperature control during material synthesis.
15 pages, 4 figures
References in corpus (28)
- Spin density wave anomaly at 140 K in the ternary iron arsenide BaFe2As2
- Superconductivity up to 37 K in (A1-xSrx)Fe2As2 with A=K and Cs
- Superconductivity up to 29 K in SrFe2As2 and BaFe2As2 at high pressures
- Anisotropic thermodynamic and transport properties of single crystalline (BaK)FeAs (x = 0 and 0.45)
- Superconductivity and Crystal Structures of (Ba1-xKx)Fe2As2 (x = 0 - 1)
- Pressure-induced volume-collapsed tetragonal phase of CaFe2As2 as seen via neutron scattering
- Structural and magnetic phase transitions in the ternary iron arsenides SrFe2As2 and EuFe2As2
- Antiferromagnetic transition in EuFeAs: A possible parent compound for superconductors
- Electrical Resistivity and Specific Heat of EuFe2As2 Single Crystals: Magnetic homologue of SrFe2As2
- Synthesis and Properties of CaFeAs Single Crystals
- First Order Phase Transition and Superconductivity in BaNi2As2 Single Crystals
- Superconductivity in SrNi2As2 Single Crystals
- Renormalized behavior and proximity to a magnetic quantum critical point in BaCoAs
- Single Crystal Growth and Characterization of the Iron-Based Superconductor KFe2As2 Synthesized by KAs Flux Method
- Neutron diffraction on antiferromagnetic ordering in single-crystal BaFe2As2
- Superconducting and ferromagnetic phases induced by lattice distortions in SrFe2As2
- Coexistence of Superconductivity and Charge Density Wave in SrPt2As2
- Superconductivity and the Effects of Pressure and Structure in Single Crystalline SrNiP
- Itinerant antiferromagnetism in BaCrAs
- Superconductivity at 23 K and Low Anisotropy in Rb-Substituted BaFe_2As_2 Single Crystals
- The emergence of superconductivity in BaNi2(Ge1-xPx)2 at a structural instability
- Multiorbital effects on the transport and the superconducting fluctuations in LiFeAs
- Itinerant and local-moment magnetism in EuCr2As2 single crystals
- Electronic structure of BaCuAs and SrCuAs: sp-band metals
- Electronic band structure of BaCoAs: a fully-doped ferropnictide with reduced electronic correlations
- ARPES observation of Mn-pnictide hybridization and negligible band structure renormalization in BaMnAs and BaMnSb
- Superconductivity in 122-type antimonide BaPtSb
- Direct spectroscopic evidence for completely filled Cu shell in BaCuAs and -BaCuSb