English

Structural phase transitions in the van der Waals ferromagnets Fe$_x$Pd$_{y}$Te$_2$

Strongly Correlated Electrons 2025-11-25 v2

Abstract

Here, we provide a detailed study of the crystal structure and physical properties of the recently discovered vdW ferromagnet FePd2_2Te2_2. We find this compound has a relatively wide width of formation, and grow single crystals with compositions Fex_xPdy_{y}Te2_2 where xx ranges from 0.9 to 1.1 and yy from 1.8 to 2.5, respectively. Temperature-dependent X-ray diffraction and transport measurements reveal that a first-order structural transition occurs in the range of TT = 360-420 K. Above the transition, the compounds with Pd fraction y>2y>2 adopt a disordered derivative of the tetragonal FeTe structure, with the Fe layer showing mixed Fe/Pd occupancy and the extra Pd atoms partially occupying interstitial sites. Below 370 K, the structure is incommensurately modulated. For y<2y<2, the composition Fe1.1_{1.1}Pd1.8_{1.8}Te2_2 has monoclinic symmetry at room temperature that is consistent with the reported structure of FePd2_2Te2_2. This phase undergoes a structural transition at 420 K for which the high temperature structure is yet to be determined; however, based on the similarities with the y>2y > 2 compounds, we speculate that this composition also adopts a tetragonal structure above 420\,K. All compounds investigated in the Fex_xPdy_{y}Te2_2 series show metallic behavior, with magnetic characterization indicating that they are easy-plane, hard, ferromagnets with TCT_C spanning 98--180 K. Both the critical temperature for the structural transition and the Curie temperature are moderately suppressed with increasing Pd fraction yy and corresponding decreasing Fe fraction xx, indicating that synthetic control over xx and yy paves way for the further exploration of these compounds.

Keywords

Cite

@article{arxiv.2511.15584,
  title  = {Structural phase transitions in the van der Waals ferromagnets Fe$_x$Pd$_{y}$Te$_2$},
  author = {Rafaela F. S. Penacchio and Siham Mohamed and Sérgio L. Morelhão and Sergey L. Bud'ko and Paul C. Canfield and Tyler J. Slade},
  journal= {arXiv preprint arXiv:2511.15584},
  year   = {2025}
}