(CaO)(FeSe): A Layered Wide Gap Oxychalcogenide Semiconductor
arXiv:1606.08000 · doi:10.1021/acs.chemmater.5b02164
Abstract
A new iron-oxychalcogenide (CaO)(FeSe) was obtained which crystallizes in the orthorhombic space group Pnma (No. 62) with a = 5.9180(12) Å, b = 3.8802(8) Å, c = 13.193(3) Å. The unique structure of (CaO)(FeSe) is built up of a quasi-two-dimensional network of corrugated infinite layers of corner-shared FeSe2O2 tetrahedra that extend in the ab-plane. The corrugated layers composed of corner-shared FeSe2O2 tetrahedra stack along the c-axis with Ca2+ cations sandwiched between the layers. Optical spectroscopy and resistivity measurements reveal semiconducting behavior with an indirect optical band gap of around 1.8 eV and an activation energy of 0.19(1) eV. Electronic band structure calculations at the density function level predict a magnetic configuration as ground state and confirm the presence of an indirect wide gap in (CaO)(FeSe).
References in corpus (11)
- Superconductivity at 43 K in Samarium-arsenide Oxides
- Superconductivity at 41 K and its competition with spin-density-wave instability in layered CeOFFeAs
- Superconductivity at 36 K in beta-Fe1.01Se with the compression of the interlayer separation under pressure
- Structure determination and coexistence of superconductivity and antiferromagnetic order in (Li0.8Fe0.2)OHFeSe
- Exploration of new superconductors and functional materials and fabrication of superconducting tapes and wires of iron pnictides
- Superconductivity at 17 K in (Fe2P2)(Sr4Sc2O6): a new superconducting layered pnictide oxide with a thick perovskite oxide layer
- Synthesis of a new alkali metal-organic solvent intercalated iron selenide superconductor with Tc{\approx}45K
- Phase relations in K_xFe_{2-y}Se_2 and the structure of superconducting K_xFe_2Se_2 via high-resolution synchrotron diffraction
- Superconductivity at Tc = 44 K in LixFe2Se2(NH3)y
- Superconductivity at 55 K in iron-based F-doped layered quaternary compound Sm[O1-xFx]FeAs
- Superconductivity and Phase Diagram in (LiFe)OHFeSeS