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March 29, 2026Journal of Sol-Gel Science and Technology3 citationsOpen Access

Structural, microstructure, magnetic, and dielectric characterization of BaFe12O19/NiFe2O4ferrite nanocomposites

HKHemal KhatriTGTanuj GuptaCCChetna C. Chauhan

Key Points

  • This research aims to characterize nanocomposites of BaFe12O19 and NiFe2O4 for their structural and dielectric properties.
  • Synthesized BaFe12O19 and NiFe2O4 using sol gel auto-combustion.
  • Mixed the powders at different ratios and heated them at 1000 °C.
  • Conducted characterizations using XRD, SEM, and VSM techniques.
  • XRD analysis confirmed hexagonal and cubic phases in the nanocomposites.
  • Coercivity ranged from 0.0216 T to 0.0813 T, indicating multi-domain characteristics.
  • The highest dielectric constant (ε' = 60) was observed in the 50% BaFe12O19/NiFe2O4 nanocomposite.

Abstract

BaFe12O19 and NiFe2O4 ferrite powders were synthesized separately using the sol gel auto-combustion method, and physically mixed in various weight ratios (100:0, 50:55, 40:60, 20:80, 0:100). The nanocomposites were heated at 1000 °C and characterized using XRD, SEM, VSM, and dielectric techniques. XRD analysis confirmed the presence of both hexagonal (BaFe12O19) and cubic (NiFe2O4) phases in the prepared nanocomposites. SEM micrographs revealed notable changes in the grain morphology and grain size with increasing nickel ferrite content. Magnetic hysteresis studies indicated that all BaFe12O19/NiFe2O4 nanocomposites exhibit multi-domain nature as reflected by the squareness ratio (<0.5). The coercivity varied from 0.0216 T to 0.0813 T, while saturation magnetization varied between 27.3 Am2/kg to 38.2 Am2/kg. The nanocomposite containing the equal proportion (50%) of BaFe12O19 and NiFe2O4 exhibited the highest dielectric constant (ε' = 60 at 100 Hz). Typical ferrite behavior was observed in the frequency-dependent AC conductivity, dielectric constant, dielectric loss, electric modulus, and impedance responses. The 50% nanocomposite shows a single semi-circular arc in the higher frequency region, where other nanocomposites show double arcs at lower and higher frequency regions.

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Cite This Study

Khatri et al. (2026) studied this question.

synapsesocial.com/papers/69c8c214de0f0f753b39c399https://doi.org/10.1007/s10971-026-07122-2
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