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Structural and magnetic properties of Sm2Fe17−xCrxC2 nanocrystalline carbides with 0≤x≤2
Authors:I. Nehdi   M. Abdellaoui   L. Bessais   C. Djega-Mariadassou  H. Zarrouk
Affiliation:

a Institut National de Recherche et d’Analyse Physico-chimique, Pôle Technologique de Sidi Thabet, 2020, Sidi Thabet, Tunisie

b Laboratoire de Chimie Métallurgique des Terres Rares, GLVT, 2–8 Rue Henri Dunant F 94320, Thiais-Cedex, France

Abstract:The crystallographic and the Curie temperature of the Sm2Fe17−xCrxC2 (x=0.5, 1, 1.5 and 2) carbides have been extensively studied. X-ray diffraction studies have shown that all these alloys are approximately single phases corresponding to the Th2Zn17 type rhombohedral structure with a small amount of -Fe. The amount of this residual -Fe phase decreases with increasing the Cr atomic content. It decreases from 1 wt% for x=0.5 to 0.4 wt.% for x=2. The lattice parameter c increases as a function of the Cr atomic content x from x=0 to x=1.5 and then decreases. This is due to the Cr atoms which prefer to substitute the Fe atoms in the 6c sites located along the c-axis. The lattice parameter a and the unit-cell volume decrease in all substitution ranges. The insertion of the C atoms leads essentially to an increase of the distances between the 9d and 18h sites and the 9d–18f sites. The Curie temperature reaches a maximum value of 583 K for x=1.5 and then decreases to 551 K for x=2. The enhancement of the Tc for lower Cr contents is due to a lowering of the hybridization of the iron atoms with their neighbors, the magnetovolume effect and the reduction of antiferromagnetic interactions. However, the decrease in Tc for higher Cr content is due to the reduction in the number of Fe–Fe pairs due to the magnetic dilution effect. For given interatomic distances, the exchange coupling of the Cr–Cr atoms is not of antiferromagnetic type and the exchange integral of the Cr–Cr pair is higher than that of the Fe–Fe pair.
Keywords:Transition metal compounds   Rare earth compounds   Crystal structure   Magnetic measurements
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