Structural, magnetic and electrical properties of a new double-perovskite LaNaMnMoO 6 material

Author:

Borchani Sameh Megdiche12,Koubaa Wissem Cheikh-Rouhou34,Megdiche Makrem2

Affiliation:

1. Institut Supérieur d'Informatique et de Multimédia de Sfax, Pôle technologique de Sfax, BP 242, Sakiet Ezzit, 3021 Sfax, Tunisia

2. Laboratoire de Caractérisation Spectroscopique et Optique des Matériaux, Sfax University, BP 1171, 3000 Sfax, Tunisia

3. Laboratoire de Physique des Matériaux, Faculté des Sciences de Sfax, Sfax University, BP 1171, 3000 Sfax, Tunisia

4. Centre de Recherche en Informatique Multimédia et Traitement Numérique des Données, Technopôle de Sfax, BP 275, Sakiet Ezzit, 3021 Sfax, Tunisia

Abstract

Structural, magnetic, magnetocaloric, electrical and magnetoresistance properties of an LaNaMnMoO 6 powder sample have been investigated by X-ray diffraction (XRD), magnetic and electrical measurements. Our sample has been synthesized using the ceramic method. Rietveld refinements of the XRD patterns show that our sample is single phase and it crystallizes in the orthorhombic structure with Pnma space group. Magnetization versus temperature in a magnetic applied field of 0.05 T shows that our sample exhibits a paramagnetic–ferromagnetic transition with decreasing temperature. The Curie temperature T C is found to be 320 K. Arrott plots show that all our double-perovskite oxides exhibit a second-order magnetic phase transition. From the measured magnetization data of an LaNaMnMoO 6 sample as a function of the magnetic applied field, the associated magnetic entropy change |−ΔSM| and the relative cooling power (RCP) have been determined. In the vicinity of T C , |−ΔSM| reached, in a magnetic applied field of 8 T, a maximum value of ∼4 J kg −1  K −1 . Our sample undergoes a large magnetocaloric effect at near-room temperature. Resistivity measurements reveal the presence of an insulating-metal transition at Tρ = 180 K. A magnetoresistance of 30% has been observed at room temperature for 6 T, significantly larger than that reported for the A 2 FeMoO 6 (A = Sr, Ba) double-perovskite system.

Funder

Tunisian Ministry of Higher Education and Scientific Research

Publisher

The Royal Society

Subject

Multidisciplinary

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