Synthesis, crystal structure and spin-density-wave anomaly of the iron arsenide-fluoride SrFeAsF
M. Tegel, S. Johansson, V. Weiss, I. Schellenberg, W. Hermes, R., Poettgen, Dirk Johrendt

TL;DR
This study reports the synthesis and structural analysis of SrFeAsF, revealing a spin-density-wave transition at 175 K, similar to other iron arsenide superconductors, indicating its potential as a parent compound for oxygen-free iron-based superconductors.
Contribution
The paper introduces SrFeAsF as a new iron arsenide-fluoride compound with detailed structural and magnetic characterization, highlighting its SDW anomaly and potential for superconductivity research.
Findings
SrFeAsF has a tetragonal structure at room temperature.
It undergoes a phase transition at 175 K with magnetic and structural anomalies.
The compound exhibits a spin density wave (SDW) at 175 K.
Abstract
The new quaternary iron arsenide-fluoride SrFeAsF with the tetragonal ZrCuSiAs-type structure was synthesized and the crystal structure was determined by X-ray powder diffraction (P4/nmm, a = 399.30(1), c = 895.46(1) pm). SrFeAsF undergoes a structural and magnetic phase transition at 175 K, accompanied by strong anomalies in the specific heat, electrical resistance and magnetic susceptibility. In the course of this transition, the space group symmetry changes from tetragonal (P4/nmm) to orthorhombic (Cmme). 57Fe Moessbauer spectroscopy experiments show a single signal at room temperature at an isomer shift of 0.30(1) mm/s and magnetic hyperfine-field splitting below the phase transition temperature. Our results clearly show that SrFeAsF exhibits a spin density wave (SDW) anomaly at 175 K very similar to LaFeAsO, the parent compound of the iron arsenide-oxide superconductors and thus…
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