Preparation and Magnetic Properties of MnFe2O4 Octahedral Microcrystals

被引:0
|
作者
Hua Jiao
机构
[1] Weinan Teachers University,Department of Chemistry and Chemical Engineering
来源
Journal of Materials Engineering and Performance | 2011年 / 20卷
关键词
coprecipitation; magnetic; MnFe; O; octahedra;
D O I
暂无
中图分类号
学科分类号
摘要
MnFe2O4 octahedra have been prepared by reaction of Mn2+ ions and Fe3+ in alkaline condition via heat treatment of the coprecipitation product. The as-prepared powders were characterized in detail by conventional techniques such as powder x-ray diffraction; field emission electron microscopy and transmission electron microscopy. Vibrating sample magnetometer was used to determine the magnetic properties at room temperature. The results show that the MnFe2O4 octahedra were single crystals with cubic jacobsite structure and a size distribution from 0.8 to 1.0 μm. The octahedra obtained at 1100 and 1200 °C exhibited a ferromagnetic behavior with the coercive force (Hc) value of 49.03 and 39.23 Oe, saturation magnetization (Ms) value of 42.93 and 47.98 emu/g and remanent magnetization (Mr) value of 2.16 and 2.55 emu/g, respectively. It is indicated that the heat treatment temperature has a significant effect on the formation of the jacobsite structure. Furthermore, a possible mechanism was also proposed to account for the growth of these products.
引用
收藏
页码:1638 / 1641
页数:3
相关论文
共 50 条
  • [1] Preparation and Magnetic Properties of MnFe2O4 Octahedral Microcrystals
    Jiao, Hua
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2011, 20 (09) : 1638 - 1641
  • [2] Effect of ZnO on Structural and Magnetic Properties of MnFe2O4/ZnO Nanocomposite
    B. Aslibeiki
    P. Kameli
    Journal of Superconductivity and Novel Magnetism, 2015, 28 : 3343 - 3350
  • [3] CeO2/MnFe2O4 nanocomposite: Structural, magnetic, electrochemical and cytotoxicity properties
    Manohar, Ala
    Suvarna, Thirukachhi
    Vattikuti, S. V. Prabhakar
    Sudhani, Hemanth P. K.
    Manivasagan, Panchanathan
    Jang, Eue-Soon
    Atif, M.
    Kumar, Ashok
    Sharma, Kuldeep
    Mameda, Naresh
    Kim, Ki Hyeon
    INORGANIC CHEMISTRY COMMUNICATIONS, 2025, 172
  • [4] Compressibilities of MnFe2O4 polymorphs
    Lijin Ye
    Shuangmeng Zhai
    Xiang Wu
    Chaowen Xu
    Ke Yang
    Yuji Higo
    Physics and Chemistry of Minerals, 2015, 42 : 569 - 577
  • [5] Size-Dependent Magnetic Heating of MnFe2O4 Nanoparticles
    L. H. Nguyen
    N. X. Phuc
    D. H. Manh
    N. H. Nam
    N. X. Truong
    N. V. Quynh
    P. T. Phong
    P. H. Nam
    Journal of Electronic Materials, 2021, 50 : 5318 - 5326
  • [6] Synthesis of Polyaniline–MnFe2O4–CTAB Nanocomposite in Ionic Liquid: Its Magnetic Properties
    S. Esir
    S. Shafiua
    R. Topkaya
    A. Baykal
    Journal of Inorganic and Organometallic Polymers and Materials, 2013, 23 : 1368 - 1374
  • [7] Influence of temperature on structural, magnetic and thermal properties of superparamagnetic MnFe2O4 nanoparticles
    Nitika
    Rana, Anu
    Kumar, Vinod
    MATERIALS TODAY-PROCEEDINGS, 2021, 45 : 4773 - 4776
  • [8] Polyaniline–MnFe2O4–CTAB Nanocomposite: Low Temperature Magnetic Investigation
    A. Baykal
    R. Topkaya
    Journal of Superconductivity and Novel Magnetism, 2014, 27 : 1517 - 1523
  • [9] DFT Application on the Interaction Properties of Ethanol Vapors with MnFe2O4 Nanostructures
    V. Nagarajan
    A. Thayumanavan
    R. Chandiramouli
    Journal of Inorganic and Organometallic Polymers and Materials, 2018, 28 : 1753 - 1763
  • [10] Cation distribution and magnetic properties of Zn2+ substituted MnFe2O4 nanoparticles
    Shahane, G. S.
    Zipare, K. V.
    Bandgar, S. S.
    Mathe, V. L.
    JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS, 2017, 28 (05) : 4146 - 4153