Full Paper View Go Back

A comparative study on synthesis techniques of Nanoferrites and its applications

T. Ram Prasad1 , S.Nagaveni 2 , Anuradha Guptha3 , B. Ajay Kumar4

Section:Research Paper, Product Type: Journal-Paper
Vol.10 , Issue.6 , pp.26-30, Dec-2022


Online published on Dec 31, 2022


Copyright © T. Ram Prasad, S.Nagaveni, Anuradha Guptha, B. Ajay Kumar . This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
 

View this paper at   Google Scholar | DPI Digital Library


XML View     PDF Download

How to Cite this Paper

  • IEEE Citation
  • MLA Citation
  • APA Citation
  • BibTex Citation
  • RIS Citation

IEEE Style Citation: T. Ram Prasad, S.Nagaveni, Anuradha Guptha, B. Ajay Kumar, “A comparative study on synthesis techniques of Nanoferrites and its applications,” International Journal of Scientific Research in Physics and Applied Sciences, Vol.10, Issue.6, pp.26-30, 2022.

MLA Style Citation: T. Ram Prasad, S.Nagaveni, Anuradha Guptha, B. Ajay Kumar "A comparative study on synthesis techniques of Nanoferrites and its applications." International Journal of Scientific Research in Physics and Applied Sciences 10.6 (2022): 26-30.

APA Style Citation: T. Ram Prasad, S.Nagaveni, Anuradha Guptha, B. Ajay Kumar, (2022). A comparative study on synthesis techniques of Nanoferrites and its applications. International Journal of Scientific Research in Physics and Applied Sciences, 10(6), 26-30.

BibTex Style Citation:
@article{Prasad_2022,
author = {T. Ram Prasad, S.Nagaveni, Anuradha Guptha, B. Ajay Kumar},
title = {A comparative study on synthesis techniques of Nanoferrites and its applications},
journal = {International Journal of Scientific Research in Physics and Applied Sciences},
issue_date = {12 2022},
volume = {10},
Issue = {6},
month = {12},
year = {2022},
issn = {2347-2693},
pages = {26-30},
url = {https://www.isroset.org/journal/IJSRPAS/full_paper_view.php?paper_id=3004},
publisher = {IJCSE, Indore, INDIA},
}

RIS Style Citation:
TY - JOUR
UR - https://www.isroset.org/journal/IJSRPAS/full_paper_view.php?paper_id=3004
TI - A comparative study on synthesis techniques of Nanoferrites and its applications
T2 - International Journal of Scientific Research in Physics and Applied Sciences
AU - T. Ram Prasad, S.Nagaveni, Anuradha Guptha, B. Ajay Kumar
PY - 2022
DA - 2022/12/31
PB - IJCSE, Indore, INDIA
SP - 26-30
IS - 6
VL - 10
SN - 2347-2693
ER -

195 Views    179 Downloads    46 Downloads
  
  

Abstract :
Nano-materials are the particles with the both external and internal structural dimensions declining in the range of 1–100nm. Nanomaterials exhibit unique optical, electrical, mechanical, and quantum properties at this scale in contrast to their molecular-scale behavior. In a thorough introduction, the current review describes the methods of synthesis and uses of nanoferrites in a variety of electrical and electronic applications, magnetic recording applications for audio and videotapes, high density digital recording discs, computer memory, antenna fabrication etc and in medical field for cancer treatment and in MRI, in household appliances. The benefits of the Co-Precipitation approach over hydrothermal and sol-gel synthesis procedures for the creation of nanoferrites were the main focus of this review.

Key-Words / Index Term :
Nano ferrites, Hydro thermal method, sol-gel method, Co-precipitation method, Environmental applications

References :
[1] S.Hazra, N.N. Ghosh, “Preparation of Nanoferrites and Their Applications”, Journal of Nanoscience and Nanotechnology, Vol 14, No. 2 , pp. 1983-2000, 2014.
[2] V.M. Vicky, S. Rodney, S. Ajay, R.M. Hardik, “Introduction to metallic nanoparticles” ,J Pharm Bioallied Sci. Vol 4, 282–289, 2010.
[3] R. Jasrotia, P. Puri, A. Verma, V.P. Singh, “Magnetic and electrical traits of solgel synthesized Ni-Cu-Zn nanosized spinel ferrites for multi-layer chip inductors application”, Journal of Solid State Chemistry ,2020.
[4] G. Pilania, V. Kocevski, J.A. Valdez, “Prediction of structure and cation ordering in an ordered normal-inverse double spinel”, Commun Mater 1, 84, 2020.
[5] Y.H. Hou, Y.J. Zhao, Z.W. Liu, H.Y. Yu, X.C. Zhong, W.Q. Qiu, D.C. Zeng, L.S. Wen, “Structural, electronic and magnetic properties of partially inverse spinel CoFe2O4:a first-principles study”, J.Phys. D:Appl. Phys.43 445003, 2010.
[6] M. Houshiar, F. Zebhi, Z. J. Razi, A.A.Z. Askari, “Synthesis of cobalt ferrite (CoFe2O4) nanoparticles using combustion, co precipitation, and precipitation methods: A comparison study of size, structural, and magnetic properties”. Journal of Magnetism and Magnetic Materials Volume 371, Pages 43-48, 2014.
[7] Nejati, Zabihi. “Preparation and magnetic properties of nano size nickel ferrite particles using hydrothermal method”, Chemistry Central journal. Vol 6. Pp 23. 2012. 10.1186/1752-153X-6-23.
[8] L.M. Karoline, T.E. Taveira, H.A. Winkler, F. Hatem, P.A. Gómez, “CoFe2O4 and ZnFe2O4 Nanoparticles: An Overview About Structure, Properties, Synthesis and Biomedical Applications”, Journal of Colloid Science and Biotechnology,Vol 5, No. 1, pp. 45-54, 2016.
[9] A. Ihab, A. Latif, “Fabrication of Nano - Size Nickel Ferrites for Gas Sensors Applications”, journal of physics vol. 1 no. 2, pp. 50 – 53, 2012.
[10] R. Srivastava, B.C. Yadav, “Ferrite Materials: Introduction, Synthesis Techniques, and Applications as Sensors”, International Journal of Green Nanotechnology, Pages: 141–154,2012, ISSN: 1943-0892.
[11] M.K.Zate , S.D.Raut Shubhangi, D.Shirsat Sushil Sangale , A.S.Kadam. “Ferritenanostructures: synthesis methods , Spinal Ferrite Nanostructures for Energy Storage Devices” ISBN 978-0-12-819237-5, pp 13-34, 2020.
[12] N. Kasapoglu, B. Birsöz, A.Baykal, Y. Köseoglu, M. Toprak. "Synthesis and magnetic properties of octahedral ferrite Ni?Co1?? Fe2O4 nanocrystals" Open Chemistry, vol. 5, no. 2, pp. 570-580, 2007.
[13] G. Allaedini, S.M. Tasirin, P. Aminayi, “Magnetic properties of cobalt ferrite synthesized by hydrothermal Method” Int Nano Lett, Vol 5, 183–186, 2015.
[14] T. Ramaprasad, R. Jeevan Kumar, U. Naresh, M. Prakash, D. Kothandanand , K. Chandra Babu Naidu. “ Effect of pH value on structural and magnetic properties of CuFe2O4 nanoparticles synthesized by low temperature hydrothermal technique”, Mater. Res. Express, Vol 5, 095025, 2018.
[15] T. Firoz Khan, U. Naresh, T. Ramprasad, R. Jeevan Kumar , “Structural, Morphological, and Magnetic Properties of Cobalt-Doped Nickel Ferrite Nanoparticles”, Journal of Superconductivity and Novel Magnetism, 2021.
[16] K.Chandra Babu Naidu, W.Madhuri, “Hydrothermal synthesis of NiFe2O4 nano-particles: structural, morphological, optical, electrical and magnetic properties”. Bull. Mater. Sci., Vol. 40, No. 2, Pp.417–425. 2017.
[17] A. Gatelyt?, D. Jasaitis, A. Beganskien?, A. Kareiva, “Sol-Gel Synthesis and Characterization of Selected Transition Metal Nano-Ferrites”. Materials science, Vol. 17, No.3.2011.
[18] G.H. Kale, A.V. Humbe, S.D. Birajdar, A.B. Shinde, K.M. Jadhav, “L-Ascorbic acid assisted synthesis and characterization of CoFe2O4 nanoparticles at different annealing temperatures”, J Mater Sci: Mater Electron, 09, 2015.
[19] J.Azadmanjiri, H.K Salehani , M.R. Barati , F. Farzan, “Preparation and Electromagnetic properties of Ni1?x CuxFe2O4 nanoparticle ferrites by sol–gel auto-combustion method”, Materials Letters 61, pp 84–87, 2007.
[20] C. Izabela, V. Cristian, “Synthesis Methods of Obtaining Materials for Hydrogen Sensors”, Sensors , Vol 21(17), pp5758, 2021.
[21] Rachna, N.B.Singh, A. Agarwal, “Preparation, Characterization, Properties And Applications of nano Zinc Ferrite”, Materials Today: Proceedings, Volume 5, Issue 3, Part 1, Pages 9148-9155, 2018.
[22] E.E.Ateia, D.N.Ghaar, Y. Badr, N. Fangary, “Nd:YAG laser irradiation effect on the physical properties of cobalt ferrite nanoparticles”, Applied Physics A , Vol 125, pp 697, 2019.
[23] P. Thakur, R. Sharma, M. Kumar, S.C. Katyal, “Super paramagnetic La Doped Mn-Zn Nano Ferrites: Dependence on Dopant Content and CrystalliteSize”, Mater.Res.Express, Vol 3, 075001, 2016.
[24] N. Zhu, H. Ji, P. Yu, J. Niu, M.U. Farooq, M.W. Akram, I. O.Udego, H. Li and X. Niu, “Surface Modification of Magnetic Iron Oxide Nanoparticles”, Nanomaterials, Vol 8, pp 810. 2018.
[25] G. Rana , P. Dhiman , A. Kumar, D.N.Vo, G. Sharma , S. Sharma, Mu. Naushad, “Recent advances on nickel nano-ferrite: A review on processing techniques, properties and diverse applications”, Chemical-Engineering research and design, vol-175, pp 182-208, 2021.
[26] S.R. Mokhosi, W. Mdlalose, A. Nhlapo, M. Singh. “Advances in the Synthesis and Application of Magnetic Ferrite Nanoparticles for Cancer Therapy”. Pharmaceutics Vol 14, pp 937, 2022.
[27] S.Y. Srinivasan, K.M. Paknikar, B. Dhananjay, G. Virendra, “Applications of cobalt ferrite nanoparticles in biomedical nanotechnology”, Nanomedicine (Lond), Vol 13(10), pp 1221-1238, 2018,ISSN 1743-5889.
[28] T. Dippong, E.A. Levei, O. Cadar, “Recent Advances in Synthesis And Applications of MFe2O4 (M=Co,Cu,Mn,Ni,Zn) Nanoparticles”, Nanomaterials,Vol 11, 1560, 2021.
[29] P. Thakur, D. Chahar, S. Taneja, N. Bhalla, A. Thakur, “A review on MnZn ferrites: Synthesis, characterization and applications”. Ceram Int., Vol 46(10), pp15740–15763, 2020. .
[30] B. Issa, I.M. Obaidat, B.A.Albiss, Y. Haik, “Magnetic Nanoparticles: Surface Effects and Properties Related to Biomedicine Applications”. International Journal of Molecular Sciences. Vol 14(11), pp 21266-21305, 2013.

Authorization Required

 

You do not have rights to view the full text article.
Please contact administration for subscription to Journal or individual article.
Mail us at  support@isroset.org or view contact page for more details.

Go to Navigation