Modeling of Magnetic, Magnetocaloric Properties and Dielectrical Characterization of (La0.75Nd0.25)2/3(Ca0.8Sr0.2)1/3MnO3 Manganite Oxide

被引:0
|
作者
S. Chouikhi
J. Khelifi
M. Nasri
E. Dhahri
K. Khirouni
机构
[1] University of Kairouan,Research Unit of Valuation and Optimization of Resource, Faculty of Science and Technology of Sidi Bouzid
[2] Jouf University,Chemistry Department, College of Science
[3] University of Sfax,Laboratory of Applied Physics, Faculty of Sciences of Sfax
[4] Faculté des Sciences de Gabés,Laboratoire de Physiques des Matériaux et Nanomatériaux appliqués à l’environnement
来源
Journal of Low Temperature Physics | 2019年 / 197卷
关键词
Manganite; Theoretical approaches; Magnetocaloric effect; Electrical properties; Dielectric behavior;
D O I
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中图分类号
学科分类号
摘要
In the present work, we aim to analyze the magnetocaloric and electrical properties of (La0.75Nd0.25)2/3(Ca0.8Sr0.2)1/3MnO3 manganite prepared by solid-state method at high temperature. The experimental results of the magnetization show that the (La0.75Nd0.25)2/3(Ca0.8Sr0.2)1/3MnO3 compound exhibits a paramagnetic–ferromagnetic transition at TC = 240 K. In addition to the experimental study, theoretical approaches are adopted to investigate the magnetocaloric behavior of this sample. The important parameters such as maximum entropy change, full width at half maximum (δTFWHM) and relative cooling power are explained qualitatively. The electrical properties of the studied sample have been investigated by using a complex impedance spectroscopy technique. These electrical measurements reveal that (La0.75Nd0.25)2/3(Ca0.8Sr0.2)1/3MnO3 sample exhibits a metallic behavior at low temperature and insulator one at high temperature. The temperature (TMI) of the metal–insulator transition is found to be about 240 K. The effects of frequency, temperature and composition on permittivity ε′, ε″ and dielectric loss (tanδ) have been also discussed in terms of hopping of charge carriers between Mn3+ and Mn4+ ions.
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页码:471 / 484
页数:13
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