FTIR and VSM Study of Sol-Gel Synthesized Nanoparticles Of Mg0.8Zn0.2CrxFe2-xO4

Authors(6) :-Swati Patil, P. M. Kharade, J. V. Thombare, R.S.Gaikwad, Sagar Mane, S. S. Dhasade

In this study, spinel magnesium zinc ferrite (Mg 0.8Zn0.2 Crx Fe2-x O4 : x = 0.0, 0.2, 0.4, 0.6, 0.8 and 1.0) nanoparticles were synthesized by sol-gel auto combustion method. The effects of chromium ions on the functional group and magnetic properties of spinel Mg-Zn ferrites nanocomposites were investigated. Characterization methods such as Fourier transform infrared (FT-IR) spectroscopy and vibrating sample magnetometer (VSM) were used to study functional group determination and magnetic properties of ferrite materials. With the help of FTIR, the nanoregime effect on parameters such as vibration frequency, bond length, and force constant is estimated. Using the Vibrating Sample Magnetometer (VSM), the M–H loop of Mg 0.8Zn0.2 Crx Fe2-x O4 has been traced and saturation magnetization (Ms), coercivity (HC), and retentivity (MR) studied.

Authors and Affiliations

Swati Patil
Department of Physics, Pratapsingh Mohite Mahavidyalaya, Karmala, Dist-Solapur, Maharashtra, India
P. M. Kharade
Department of Physics, Shankarrao Mohite Patil Mahavidyalaya, Akluj, Dist-Solapur, Maharashtra, India
J. V. Thombare
Department of Physics, Vidnyan Mahavidyalaya, Sangola, Dist-Solapur, Maharashtra, India
R.S.Gaikwad
Department of Physics, Vidnyan Mahavidyalaya, Sangola, Dist-Solapur, Maharashtra, India
Sagar Mane
Department of Physics, Yeungnam University, Gyeongsan, Gyeongbuk 38541, Republic of Korea
S. S. Dhasade
Department of Physics, Vidnyan Mahavidyalaya, Sangola, Dist-Solapur, Maharashtra, India

Mg-Zn ferrites; sol-gel synthesis; FTIR; VSM.

  1. Modified ferroelectric/magnetic and leakage current density properties of Co and Sm co-doped bismuth ferrites, Balesh Kumar Vashisth, Jarnail S. Bangruwa, Anu Beniwal, S.P. Gairola, Ashok Kumar, Nidhi Singh, Vivek VermaJournal of Alloys and Compounds, 698 ( 2017) 699-705
  2. Sol-gel route of synthesis of nanoparticles of Mg Fe2O4 and XRD, FTIR and VSM study, A. Pradeep, P. Priyadharsini, G. Chandrasekaran, Journal of Magnetism and Magnetic Materials 320 (2008) 2774– 2779
  3. Green hydroelectrical energy source based on water dissociation by nanoporous ferrite Ravinder Kumar Kotnala, and Jyoti Shah, Int. J. Energy Res. 40 (2016) 1652-1661
  4. Structural and Electrical Properties of Li–Ni Nanoferrites Synthesised by Citrate Gel Autocombustion Method, G. Aravind, D. Ravinder, and V. Nathanial, Physics Research International, Volume 2014, Article ID 672739, 11 pages
  5. Magnetic study of nanocrystalline Mg-doped lithium ferrite, Marek Pekala, Frank J. Berry, Hisham M Widatallah, Czechoslovak Journal of Physics, 52 (2002) 101-104
  6. Influence of mechanical milling conditions on the dispersity of lithium ferrite, S A Lamonova, E N Lysenko and A V Malyshev, Materials Science and Engineering 93 (2015) 012035
  7. Structural characterization and magnetic properties of undoped and copper-doped cobalt ferrite nanoparticles prepared by the octanoate coprecipitation route at very low dopant concentrations, Hypolite Mathias Kamta Tedjieukeng, Patrice Kenfack Tsobnang, Roussin Lontio Fomekong, Ekane Peter Etape, Pattayil A. Joy, Arnaud Delcortee and John Ngolui Lambia, Royal Society of Chemistry, 8 (2018) 38621–38630
  8. Enhanced magneto-optical and photocatalytic properties of transition metal cobalt (Co2+ ions) doped spinel MgFe2O4 ferrite nanocomposites, A. Godlyn Abraham, A. Manikandan, E. Manikandan, S. Vadivel, S.K. Jaganathan, A. Baykal, P. Sri Renganathan, Journal of Magnetism and Magnetic Materials, 452 (2018) 380-388
  9. One-Pot Low Temperature Synthesis and Characterization Studies of Nanocrystalline α-Fe2O3 Based Dye Sensitized Solar Cells, A. Manikandan, A. Saravanan, S. Arul Antony, and M. Bououdina, Journal of Nanoscience and Nanotechnology, 15 (2015) 4358–4366
  10. Sintering of Nanosized Mn-Zn Ferrite Powders, Marko Rozman and Miha Drofenik, American Ceramic Society, 81(1998) 1757–64
  11. Application of Rietveld Method to the Structural Characteristics of Substituted Copper Ferrite Compounds, S. Ahmed Farag, M. A. Ahmed, S. M. Hammad, A. M. Moustafa, Cryst. Res. Technol., 36 (2001) 85–92
  12. Structural and dielectric properties of copper-based spinel ferrites, The European Physical Journal Plus, Hafiz Muhammad Tahir Farid,Ishtiaq Ahmad, Irshad Ali, Asif Mahmood, and Shahid M. Ramay, 41 (2018) 133
  13. Interplay between Longitudinal and Transverse Contrasts in Fe3O4 Nanoplates with (111) Exposed Surfaces, Zijian Zhou,Zhenghuan Zhao,Hui Zhang,Zhenyu Wang, Xiaoyuan Chen, Ruifang Wang,Zhong Chen, and Jinhao Gao, ACS anao, 8 (2014) 7976–7985
  14. Modified ferroelectric/magnetic and leakage current density properties of Co and Sm co-doped bismuth ferrites, Balesh Kumar Vashisth1, Jarnail S. Bangruwa, Anu Beniwal, S.P. Gairola, Ashok Kumar, Nidhi Singh, Vivek Verma, Modified ferroelectric/magnetic and leakage current density properties of Co and Sm co-doped bismuth ferrites, Journal of Alloys and Compounds, 698, (2017) 699-705
  15. Environment-Friendly Mesoporous Magnetite Nanoparticles-Based Hydroelectric Cell Shipra Jain, Jyoti Shah, S. R. Dhakate, Govind Gupta, C. Sharma, and R. K. Kotnala, J. Phys. Chem. C, 122 (2018) 5908–5916
  16. Enhanced Catalytic Activity and Magnetic Properties of Spinel MnxZn1−xFe2O4 (0.0 ≤ x ≤ 1.0) Nano-Photocatalysts by Microwave Irradiation Route,G. Padmapriya, A. Manikandan, V. Krishnasamy, Saravana Kumar Jaganathan, S. Arul Antony, Journal of Superconductivity and Novel Magnetism, 29(2016) 8-16
  17. Role of Cu2+ ions substitution in magnetic and conductivity behaviour of nano CoFe2O4, D.M. Jnaneshwara, D.N. Avadhani, B. Daruka Prasad, H. Nagabhushana,B. M. Nagabhushana, S.C. Sharma, S. C. Prashantha, C. Shivakumaraha, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 132 (2014) 256-262
  18. R.D.Waldron,Phy.Rev.99(1955)1727
  19. O.Hemeda,M.A.Amer,S.AboulEnein,M.A.Ahmed,Phys.StatusSolidiA156 (1996) 29.
  20. R.D.Waldron,Phy.Rev.99(1955)1727
  21. L. Neel, Ann. Phys. 3 (1948) 137
  22. L. Neel, C.R.Acad.,Sci.Paris230(1950)375
  23. S.Chikazumi, S.Charap, Physics of Magnetism, John Wiley & Sons, NewYork,1964. (pp.153).

Publication Details

Published in : Volume 9 | Issue 2 | March-April 2021
Date of Publication : 2021-04-30
License:  This work is licensed under a Creative Commons Attribution 4.0 International License.
Page(s) : 127-132
Manuscript Number : IJSRST219229
Publisher : Technoscience Academy

Print ISSN : 2395-6011, Online ISSN : 2395-602X

Cite This Article :

Swati Patil, P. M. Kharade, J. V. Thombare, R.S.Gaikwad, Sagar Mane, S. S. Dhasade, " FTIR and VSM Study of Sol-Gel Synthesized Nanoparticles Of Mg0.8Zn0.2CrxFe2-xO4", International Journal of Scientific Research in Science and Technology(IJSRST), Print ISSN : 2395-6011, Online ISSN : 2395-602X, Volume 9, Issue 2, pp.127-132, March-April-2021.
Journal URL : https://ijsrst.com/IJSRST219229
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