Study of structure and magnetic properties of Ni–Zn ferrite nano-particles synthesized via co-precipitation and reverse micro-emulsion technique

被引:0
作者
M. Abdullah Dar
Jyoti Shah
W. A. Siddiqui
R. K. Kotnala
机构
[1] Jamia Millia Islamia University,Department of Applied Sciences and Humanities
[2] National Physical Laboratory,undefined
来源
Applied Nanoscience | 2014年 / 4卷
关键词
Micro-emulsion; Nano-particles; Super-paramagnetism; Blocking temperature; Coercivity;
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中图分类号
学科分类号
摘要
Nano-crystalline Ni–Zn ferrites were synthesized by chemical co-precipitation and reverse micro-emulsion technique with an average crystallite size of 11 and 6 nm, respectively. The reverse micro-emulsion method has been found to be more appropriate for nano-ferrite synthesis as the produced particles are monodisperse and highly crystalline. Zero-field cooled and field cooled magnetization study under different magnetic fields and magnetic hysteresis loops at different temperatures have been performed. The non-saturated M–H loops, absence of hysteresis, and coercivity at room temperature are indicative of the presence of super paramagnetic and single-domain nano-particles for both the materials. In sample ‘a’, the blocking temperature (TB) has been observed to decrease from 255 to 120 K on increasing the magnetic field from 50 to 1,000 Oe, which can be attributed to the reduction of magneto crystalline anisotropy constant. The MS and coercivity were found to be higher for sample ‘a’ as compared with sample ‘b’ since surface effects are neglected on increasing the crystallite size.
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页码:675 / 682
页数:7
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[31]   Study of superparamagnetic nano particles of MnxCo1-xFe2O4 ferrite system prepared by co-precipitation technique [J].
Tanna, Ashish R. ;
Sosa, Khengar M. ;
Joshi, Hiren H. .
MATERIALS RESEARCH EXPRESS, 2017, 4 (11)
[32]   A co-precipitation synthesized Zn(II)/Ni(II) magnetic heterostructure ferrite for photocatalytic degradation of metronidazole: Charge carriers transfer mechanism, kinetics and thermodynamic aspects [J].
Sharafzadeh, Safoura ;
Zolgharnein, Javad ;
Nezamzadeh-Ejhieh, Alireza ;
Farahani, Saeideh Dermanaki .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2025, 106 :1429-1442
[33]   Structural, magnetic and optical characterization of Ni0.8Zn0.2Fe2O4 nano particles prepared by co-precipitation method [J].
Kannan, Y. B. ;
Saravanan, R. ;
Srinivasan, N. ;
Praveena, K. ;
Sadhana, K. .
PHYSICA B-CONDENSED MATTER, 2016, 502 :181-186
[34]   Study of magnetic and structural and optical properties of Zn doped Fe3O4 nanoparticles synthesized by co-precipitation method for biomedical application [J].
Marand, Zahra Rezay ;
Farimani, Mitra Helmi Rashid ;
Shahtahmasebi, Nasser .
NANOMEDICINE JOURNAL, 2014, 1 (04) :238-+
[35]   Study on the crystal structure and magnetic properties of Zn-Cu-Co nano ferrite doped with Yb3+ [J].
Jiang, Ying ;
Sun, Aimin ;
Huang, Xiaoyan ;
Wang, Jialing .
JOURNAL OF ALLOYS AND COMPOUNDS, 2023, 931
[36]   Up-conversion Luminescence Properties of Gd2O2S:(Yb3+,Er3+) Nano-particles Synthesized by a Co-precipitation Method [J].
Li, Xing ;
Lian, JingBao .
MATERIALS AND MANUFACTURING, PTS 1 AND 2, 2011, 299-300 :546-+
[37]   Microstructure and magnetic properties of nanocrystalline (Ni0.5Zn0.5)xCo1-xFe2O4 ferrite by spraying co-precipitation method [J].
Liu, Y. ;
Qiu, Y. -B. ;
Qiu, T. ;
Min, F. -F. ;
Zhu, J. -B. ;
Zhang, M. -X. .
MATERIALS RESEARCH INNOVATIONS, 2012, 16 (03) :170-174
[38]   Comparative Study of Structural and Magnetic Properties of Soft Ferrites (MFe2O4: M = Co, Ni, Zn, Mg) Synthesized via Aerosol Method [J].
Singhal, Sonal ;
Jauhar, Sheenu .
INTERNATIONAL CONFERENCE ON ADVANCES IN CONDENSED AND NANO MATERIALS (ICACNM-2011), 2011, 1393
[39]   Effect of Gd3+ ion doping on structural, optical, magnetic and dielectric properties on superparamagnetic Mg0.5Zn0.5Fe2-xGdxO4 (0 ≤ x ≤ 1) nanoparticles synthesized via oleic acid assisted chemical co-precipitation method [J].
Boora, Priya ;
Ranga, Rohit ;
Saini, Pallavi ;
Madaan, Vasundhara ;
Singh, Permender ;
Kumar, Krishan ;
Kumar, Ashok .
JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2024, 596