Study of magnetic and magnetocaloric properties of La0.6Pr0.1Ba0.3MnO3 and La0.6Pr0.1Ba0.3Mn0.9Fe0.1O3 perovskite-type manganese oxides

被引:0
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作者
R. Cherif
E. K. Hlil
M. Ellouze
F. Elhalouani
S. Obbade
机构
[1] Sfax University,Faculty of Sciences of Sfax
[2] Institut Néel,National Engineering School of Sfax, LASEM
[3] CNRS et Université Joseph Fourrier,undefined
[4] Sfax University,undefined
[5] LEPMI UMR 5279,undefined
[6] CNRS,undefined
[7] Grenoble INP,undefined
[8] Université de Savoie,undefined
[9] Université Joseph Fourier,undefined
来源
关键词
Curie Temperature; Manganite; Magnetocaloric Effect; Magnetic Entropy Change; Landau Theory;
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摘要
The compositional dependence of the magnetic and magnetocaloric properties of La0.6Pr0.1Ba0.3MnO3 (LPBMO) and La0.6Pr0.1Ba0.3Mn0.9Fe0.1O3 (LPBMFO) were investigated. Polycrystalline samples were prepared by the standard solid-state reaction method. Temperature-dependent magnetization measurements and Arrott analysis reveal second-order ferromagnetic transitions in both samples with Curie temperature increasing with doping iron from 94 K for LPBMO to 277 K for LPBMFO. Magnetic entropy change |ΔSM|\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$ | {\Delta S_{\text{M}} } | $$\end{document} was calculated by applying the thermodynamic Maxwell equation to a series of isothermal field-dependent magnetization curves. However, the analysis of the magnetocaloric effect (MCE) using Landau theory of phase transition shows that the contributions to the free energy from the presence of ferromagnetic clusters are strongly influencing the MCE by coupling with the order parameter around the Curie temperature.
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页码:8244 / 8251
页数:7
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