Study of Magnetocaloric Effect and Magnetic Phase Transition of Electron-Doped La0.9Sb0.1MnO3 Manganite

被引:3
|
作者
Meng, Quan-shui [1 ]
Han, Li-an [1 ]
Chang, Lin [1 ]
Yang, Jing [1 ]
Yan, Zheng-xin [1 ]
机构
[1] Xian Univ Sci & Technol, Dept Appl Phys, Xian 710054, Peoples R China
基金
中国国家自然科学基金;
关键词
Magnetocaloric effect; Magnetic phase transition; Landau's theory; Electron-doped manganite; LA1-XSBXMNO3 X=0.05; MAGNETORESISTANCE;
D O I
10.1007/s10948-017-4039-z
中图分类号
O59 [应用物理学];
学科分类号
摘要
An electron-doped La0.9Sb0.1MnO3 manganite was prepared by a sol-gel method, and its magnetocaloric effect and magnetic phase transition (MPT) have been systematically studied. The X-ray diffraction pattern is consistent with the rhombohedral lattice structure (R (3) over barC space group). This sample shows a ferromagnetic order at T-C = 248 K. A maximum magnetic entropy change (-Delta SM max) of 4.79 J kg(-1) K-1 and a relative cooling power (RCP) of 258.15 J kg(-1) are observed at a magnetic field change of 5 T. It is found that the values of -Delta SM max are comparable to some hole-doped manganese compounds. Nevertheless, RCP values of La0.9Sb0.1MnO3 are higher than those of some hole-doped manganites under the same field change, which is very beneficial for designing the magnetic refrigeration materials in engineering. Furthermore, Arrott plots reveal a second-order MPT for La0.9Sb0.1MnO3, which is also confirmed by Franco's universal curves. In addition, the experimental observed -Delta SM follows Lauder's mean-field theory very well, which demonstrates that the magneto-elastic and magneto-electronic couplings have a crucial importance on the magnetic entropy change of La0.9Sb0.1MnO3 manganite.
引用
收藏
页码:2233 / 2238
页数:6
相关论文
共 50 条
  • [31] Study of La0.9Sr0.1MnO3 Manganite at Different Temperature
    Patil, Swapnilkumar S.
    Jha, Prafulla K.
    Bhargava, Parag
    PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON CONDENSED MATTER PHYSICS 2014 (ICCMP 2014), 2015, 1661
  • [32] Anomalies of Critical Magnetic Behavior in La0.9Bi0.1MnO3 Manganite
    Kumar, V. Punith
    JOURNAL OF LOW TEMPERATURE PHYSICS, 2025, 218 (5-6) : 451 - 464
  • [33] 钙钛矿结构La0.9Sb0.1MnO3的庞磁电阻性质
    段苹
    谈国太
    戴守愚
    陈正豪
    周岳亮
    吕惠宾
    物理学报, 2003, (08) : 2061 - 2065
  • [34] Nuclear magnetic resonance (NMR) probe of magnetic phase separation in electron-doped manganite Ca0.95La0.05MnO3
    Savosta, MM
    Novák, P
    Englich, J
    Kohout, J
    Hejtmánek, J
    Strejc, A
    JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2002, 242 : 676 - 678
  • [35] Electron resonance and magnetic response of low-doped La0.88Ca0.12MnO3 and La0.9Sr0.1MnO3 manganite single crystals
    Rozenberg, E.
    Shames, A. I.
    Tsindlekht, M. I.
    Felner, I.
    Mukovskii, Ya. M.
    JOURNAL OF APPLIED PHYSICS, 2012, 111 (07)
  • [36] Effect of Elaborating Technique on the Structural, Magnetic, and Magnetocaloric Properties of La0.8Ca0.1Na0.1Mno3 Manganite
    S. Choura Maatar
    W. Cheikhrouhou-Koubaa
    M. Koubaa
    A. Cheikhrouhou
    Journal of Superconductivity and Novel Magnetism, 2016, 29 : 1871 - 1877
  • [37] Effect of Elaborating Technique on the Structural, Magnetic, and Magnetocaloric Properties of La 0.8 Ca 0.1 Na 0.1 Mno3 Manganite
    Maatar, S. Choura
    Cheikhrouhou-Koubaa, W.
    Koubaa, M.
    Cheikhrouhou, A.
    JOURNAL OF SUPERCONDUCTIVITY AND NOVEL MAGNETISM, 2016, 29 (07) : 1871 - 1877
  • [38] Magnetocaloric effect and magnetic properties of Tb0.9Sn0.1MnO3
    Fabris, F. Wolff
    Pekala, M.
    Drozd, V.
    Fagnard, J-F.
    Vanderbemden, Ph.
    Liu, Ru-Shi
    Ausloos, M.
    JOURNAL OF APPLIED PHYSICS, 2007, 101 (10)
  • [39] Effect of pressure on electrical transport in electron doped perovskite manganite Sr0.9Ce0.1MnO3
    Eto, T
    Honda, F
    Oomi, G
    Sundaresan, A
    PROCEEDINGS OF THE 25TH INTERNATIONAL CONFERENCE ON THE PHYSICS OF SEMICONDUCTORS, PTS I AND II, 2001, 87 : 230 - 231
  • [40] Transport properties of La0.9Sr0.1MnO3 manganite
    Hizi, W.
    Rahmouni, H.
    Gassoumi, M.
    Khirouni, K.
    Dhahri, S.
    EUROPEAN PHYSICAL JOURNAL PLUS, 2020, 135 (06):