Phase analysis and magnet properties of ZnxFe(3-x)O4 prepared by milling process

Authors

  • Mashadi Sunandar PSTBM-BATAN
  • Saskia Tiana Lampung University
  • Saskia Tiana Lampung University
  • Yunasfi Yunasfi PSTBM-BATAN

DOI:

https://doi.org/10.11113/mjfas.v14n2.940

Keywords:

Crystal Structure, Zinc ferrite, Magnet Properties, Milling Process

Abstract

Phase analysis and magnetic properties of ZnxFe(3-x)O4 (x = 0,25; 0,50; 0,75 and 1,0) have been done. The synthesis of ZnxFe(3-x)O4 was carried out using a solid reaction with the xZnO : (3-x)Fe2O3 material composition (x = 0.25, 0.50, 0.75 and 1.0) according to the mole ratio of each, then milling for 5 hours and then sintered at a temperature of 1200 °C for 3 hours. Phase identification with XRD (X-ray Diffractometer) shows that ZnxFe(3-x)O4 milling results form the diffraction peak of the NiFe2O4 and Fe2O3 phases, the greater the value of x (the Zn atom content) the less Fe2O3 % phase while the % phase ZnFe2O4 is getting bigger and even for x = 1.0 only ZnFe2O4 phase is formed (ZnFe2O4 formed 100% or single phase). Surface morphological observations with SEM (Scanning Electron Microscope) show the formation of an increasingly homogeneous structure along with the addition of Zn2+ ion content and varying sizes ranging from 1 µm to 100 nm. The properties magnetic of ZnFe2O4 with VSM (vibrating sample magnetometer) showed that the sample behave ferromagnetically with Ms higher (in the range 1.89 - 21.10 emu/g) while the Hc value is smaller (in the range 243 - 107 Oe) with the addition of Zn2+ ion content. Thus, the presence of the Fe2O3 phase can decrease the magnetic properties of the material.

Author Biographies

Mashadi Sunandar, PSTBM-BATAN

Centre for Science and Technology of Advanced Materials – National Nuclear Energy Agency

Saskia Tiana, Lampung University

Department of Physics

Saskia Tiana, Lampung University

Department of Physics

Yunasfi Yunasfi, PSTBM-BATAN

Centre for Science and Technology of Advanced Materials – National Nuclear Energy Agency

References

P. M. P. Swamy, S. Basavaraja, A. Lagashetty, N. V. S. Rao, R. Nijagunappa, A. Venkataraman. 2011.Synthesis and characterization of zinc ferrite nanoparticles obtained by self-propagating low-temperature combustion method. Bulletin of Materials Science, 34(7), 1325–1330.

C. A. Ladole. 2012. Preparation and characterization of spinel zinc ferrite ZnFe2O4. International Journal of Chemical Sciences, 10(3), 1230-1234.

G. Fan, Z. Gu, L. Yang, F. Li. 2009. Nanocrystalline zinc ferrite photocatalysts formed using the colloid mill and hydrothermal technique. Chemical Engineering Journal, 155, 534–541.

X. Huang, J. Zhang, S. Xiao, T. Sang, G. Chen. 2014. Unique electromagnetic properties of the zincferrite nanofiber. Materials Letters 124, 126–128.

N. M. Deraz, A. Alarifi. 2017. Microstructure and magnetic studies of zinc ferrite nano-particles. International Journal of Electrochemical Science 7, 6501 - 6511.

H. Xue, Z. Li, X. Wang, X. Fu. 2007. Facile synthesis of nanocrystalline zinc ferrite via a self-propagating combustion method. Materials Letters 61, 347–350.

A. Sharma, K. Parmar, R. K. Kotnala, N. S. Negi. 2012. Magnetic and dielectric properties of CoxZn1-xFe2O4 synthesized by metallo-organic decomposition technique. International Journal of Advances in Engineering & Technology, 5(1), 544-554.

W. Jiang, Z. Cao, R. Gu, X. Ye, C. Jiang, X. Gong. 2009. A simple route to synthesize ZnFe2O4 hollow spheres and their magnetorheological characteristics. Smart Materials and Structures 18, 125013.

Yunasfi, W. A. Adi, Mashadi, P. A. Rahmy. 2017. Magnetic and Microwave Absortion Properties 0f Nickel Ferrite (NixFe3-xO4) by HEM Technique. Malaysian Journal of Fundamental and Applied Sciences, 13(3), 203-206.

A. Hasanpour, M. Niyaifar, M. Asan. 2012. Synthesis and characterization of Fe3O4 & ZnO nanocomposites by sol- gel method. Proceedings of the 4th International Conference on Nanostructures (ICNS4), 12-14 March, Kish Island. I.R. Iran.

R. U. Mullai, P. P. Pradeep, G. Chandrase. 2012. Synthesis and characterization of lanthanum doped Mg-Zn ferrite nanoparticles prepared by sol-gel method. 2012. International Journal of Recent Trends in Science And Technology, 5(2), 78-85.

A. Gatelytė, D. Jasaitis, A. Beganskienė, A. Kareiva. 2011. Sol-gel synthesis and characterization of selected transition metal nano-ferrites. Materials Science (Medžiagotyra), 17(3), 302-307.

Mashadi, Yunasfi and W. A. Adi. 2016. Analysis of crystal structure and functional groups of NiFe2O4 using sol gel method. Indonesian Journal of Materials Science, 17(3). 131 – 135.

Z. Lazarevic, Jovalekic, A. Milutinovic, M. J. Romcevic, N. Romlevic. 2012. Preparation and characterization of nano ferrites. Acta Physica Polonica A, 121(3), 682-686.

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Published

03-06-2018