Magnetic and Antibacterial Studies of Nanoferrites Prepared by Self Propagating High-Temperature Synthesis Route

Author:

Bharamagoudar Ravi C.1,Patil Anil S.2,Mathad Shridhar N.3,Kumbar Vijay M.4,Kankanawadi Laxmi B.5

Affiliation:

1. Department of Physics , Jain College of Engineering , Belagavi , India

2. KLE Dr. M. S. Sheshgiri College of Engineering and Technology , Belagavi

3. Department of Physics, KLEIT , Hubballi , India

4. Maratha Mandal’s, Central Research Laboratory , Belagavi , India

5. Hirashugar Institute of Technology , Nidasoshi. Belagavi , India

Abstract

Abstract The main objective of the manuscript is the structural analysis, magnetic investigation and antimicrobial activity of Mn1−xZnxFe2O4 with stoichiometry (x = 0, 0.25, 0.5, 0.75, and 1.0). The Mn-Zn nanoferrites were synthesized by self propagating high-temperature synthesis using a mixture of fuels. The synthesized Mn-Zn nanoferrites were characterized by X-ray diffraction (XRD) that confirms cubic crystal structure with lattice constant in the range 8.372-8.432Ao. It is observed that saturation magnetization (Ms), remanence magnetization (Mr) and magneton number (Mr/Ms) decreased gradually with the increasing of Zn2+ concentration. The decrease in the saturation magnetization may be explained as, the Zn2+ concentration increases, the relative number of ferric ions on the A sites diminishes and this reduces the A–B interaction. Further, the synthesized Mn-Zn nanoferrites were tested for antibacterial activities against two-gram positive strains (Staphylococcus aureus ATCC No–12598, Lactobacillus amylovorus ATCC No– 12598), gram-negative strains E.coli ATCC No – 25922, Pseudomonas- ATCC No- 25619) and one fungal strain (C.albicans -ATCC No – 2091).

Publisher

Editura Universitatii Alexandru Ioan Cuza din Iasi

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