Influence of Calcium Substitution on Structural, Vibrational and Paramagnetic Properties of Magnesium Ferrite

Authors

  • Gurbinder Kour GGHSS, Mubarak Mandi, Panjtirthi, Jammu, Jammu & Kashmir-180 001, India
  • Balwinder Kaur Govt. Degree College, R.S. Pura, Jammu & Kashmir-181 102, India
  • Ajay Singh G. G. M. Science College, Canal Road, Jammu-Tawi, Jammu & Kashmir-180 001, India
  • Anju Kumari Govt. Degree College, Khour, Akhnoor, Jammu & Kashmir-181 203, India
  • Manju Arora CSIR-National Physical Laboratory, Dr. K.S. Krishnan Marg, New Delhi-110 012, India

DOI:

https://doi.org/10.56042/ijpap.v60i9.62368

Keywords:

Solid state reaction, Crystal structure, X - ray diffraction, Electron paramagnetic resonance

Abstract

The environment friendly calcium substituted magnesium ferrite with composition MgCaxFe2-xO4 (x = 0.00, 0.01, 0.03, 0.05, 0.07) synthesized by the conventional solid – state reaction powdered samples are studied for structural, vibrational and spin characteristics for chemical sensor application. XRD patterns with Rietveld refinement reveal partial inverse spinel structure of the prepared samples with tentative cation occupancy. The rietveld refinement is performed to know the cation occupancy in the prepared samples which could be further helpful to exploit these ferrite materials for different technological applications. The intensity of n Fe3+-O stretching vibrational peaks arising from tetrahedral (n1) and octahedral (n2) sites in IR transmittance spectra are composition and cation distribution sensitive. The presence of Ca2+/Mg2+/Fe2+ ions is evidenced by the splitting of bands and shoulder peaks in IR transmittance spectra. The strong dipolar-dipolar interactions encourage broad asymmetric EPR derivative signal of Fe3+ ions. The substitution of diamagnetic Ca2+ dopant ions in lattice strengthens dipolar-dipolar interactions, broadens the resonance signal and higher g-values due to spin disorder (spin frustration).

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Published

2023-06-15

How to Cite

Influence of Calcium Substitution on Structural, Vibrational and Paramagnetic Properties of Magnesium Ferrite. (2023). Indian Journal of Pure & Applied Physics (IJPAP), 60(9). https://doi.org/10.56042/ijpap.v60i9.62368

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