June 2026

Journal

Anisotropic Ferromagnetism in CrAu3Sb6

By:
McGuire, Michael A; Pokhrel, Nabaraj ; Cook, Matthew S; Yan, Jiaqiang ; May, Andrew F; Mandrus, David; Parker, David S
Journal Name:
Chemistry of Materials
Page Number:
5812-5822
Volume:
38
Issue Number:
11
Publication Date:
June 23, 2026
View DOI Listing:
https://doi.org/10.1021/acs.chemmater.6c00999

Abstract

The crystal structure and properties of CrAu3Sb6 are presented, determined by measurements on single crystal and polycrystalline samples and first-principles calculations. The trigonal structure (space group P3̅1m) comprises a CdI2-like sublattice of AuSb2 with Cr occupying octahedral holes in a fully ordered triangular array. It can be viewed as a variation of the interesting and well-known families of partially intercalated transition metal dichalcogenides, but with stronger interactions along the stacking direction evidenced by short Cr–Au distances. The compound is metallic and ferromagnetic with a Curie temperature of 164 K. A strong anomalous contribution to the Hall effect is seen in the ferromagnetic state, and quantum oscillations are observed in magnetization at 2 K. Magnetization measurements show that the ordered moments of 1.5 μB per Cr are oriented along the c-axis with relatively strong magnetocrystalline anisotropy. Electronic structure calculations confirm this uniaxial anisotropy and the important role of spin–orbit coupling in CrAu3Sb6 and reveal strongly favored ferromagnetic ground state consistent with the measured Curie temperature. Through combined experiment and theory, this work provides a detailed picture of the basic properties and behaviors of this uniquely structured, Cr-based, anisotropic ferromagnet.