paper

Crystal structure, magnetic properties and magnetocaloric performance of RERhIn (RE = Gd-Tm) compounds

arXiv:2505.14831

Abstract

Polycrystalline samples of the RERhIn (RE = Gd--Tm) intermetallics have been investigated by means of X-ray diffraction (XRD) as well as by DC and AC magnetometric measurements. The XRD data confirm that the compounds crystallize with the orthorhombic LuNiIn-type structure (space group Pbam, No. 55). With decreasing temperature, RERhIn spontaneously order magnetically with the critical temperatures of magnetic order equal to 10.6, 14.2, 15.4, 7.2, 5.9 and 4.9 K for RE = Gd, Tb, Dy, Ho, Er and Tm, respectively. The compounds have complex magnetic properties, showing features characteristic of both ferro- and antiferromagnetic orderings. Moreover, the magnetic properties change with increasing number of the 4f electrons from predominantly ferromagnetic in GdRhIn to predominantly antiferromagnetic in TmRhIn. The magnetic data indicate that only the rare earth atoms carry magnetic moments. The maximum magnetic entropy change () at the 0-9 T magnetic flux density change () equals 12.4 JkgK at 17 K for GdRhIn, 11.3 JkgK at 28 K for TbRhIn, 13.1 JkgK at 19 K for DyRhIn, 16.4 JkgK at 12 K for HoRhIn, 15.3 JkgK at 8 K for ErRhIn and 12.6 JkgK at 6.5 K for TmRhIn. For a selected rare earth element (RE), the member of the RERhIn family of compounds reaches the highest value, when compared with its RETIn (T = Ni, Pd, Pt) isostructural analogues, making the RERhIn intermetallics a good choice for application in low-temperature magnetic refrigeration.

17 pages, 8 figures