October 2025

Journal

Expanding the homogeneity range of UFe2: Formation of Laves phase UFe2+Ni

By:
Moseley, Duncan H; Neu, Jennifer N; Hermann, Raphael P; Parish, Chad M; Libero, Josephine; Brubaker, Zachary E
Journal Name:
Journal of Alloys and Compounds
Page Number:
183819
Volume:
1042
Publication Date:
October 1, 2025
View DOI Listing:
https://doi.org/10.1016/j.jallcom.2025.183819

Abstract

Uranium-based intermetallic Laves phases (UM$_2$) provide valuable insight into the interplay of 5f electron hybridization and magnetic properties. However, ferromagnetism in these compounds is rare. UFe$_2$ is a cubic C15 Laves phase with largest Curie temperature ($T_C$) of all such compounds, at 162 K. In this study, we report the synthesis and characterization of a novel U-based Laves phase, UFe$_2$Ni, effectively forcing excess Ni in to the UFe$_2$ structure. UFe$_2$Ni crystallizes in the cubic C15 Laves phase, appearing to deviate from the typical UM$_2$ formula and exhibiting a significantly extended homogeneity range. Annealing this material leads to an increased ferromagnetic transition temperature, between 35 and 155 K, and decreased lattice parameter with higher annealing temperatures. This variation is attributed to changes in Fe and Ni solubility with annealing temperature. Our findings highlight the potential for tuning magnetic properties in U-based Laves phases through compositional and thermal modifications, expanding the understanding of magnetically ordered intermetallics.