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March 10, 2026IET Nanodielectrics0 citationsOpen Access

Tailoring Dielectric and Multiferroic Properties in BiFeO 3 ‐SrTiO 3 Solid Solution Synthesised via Molten Salt Route for Capacitor‐Based Storage Applications

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NJN. JahangeerVignana Jyothi Institute of ManagementPMPriyanka MitraBirla Institute of Technology and Science - Hyderabad CampusBVB. Harihara Venkataraman

Key Points

  • This research aims to optimize the dielectric and magnetic properties of BFO-STO solid solutions for electronic storage applications.
  • Synthesized (1 - x)BFO-xSTO nano-ceramics using low-temperature molten salt method with NaCl flux.
  • Confirmed solid-solution formation through Rietveld refinement of X-ray diffraction patterns.
  • Analyzed microstructure with field-emission scanning electron microscopy (FESEM) and X-ray photoelectron spectroscopy (XPS).
  • Achieved single-phase perovskite structure without secondary phases.
  • Enhanced dielectric constant (∼151 at 100 kHz for x = 0.4) and reduced dielectric loss with increasing STO content.
  • Observed weak ferromagnetic behavior linked to spin canting and lattice distortion.

Abstract

ABSTRACT Bismuth ferrite (BiFeO 3 , BFO) is a prominent lead‐free multiferroic material, whereas strontium titanate (SrTiO 3 , STO) is a high‐permittivity perovskite oxide widely used to tailor dielectric performance. In this work, the solid‐solution formation of (1 − x )BFO‐ x STO (0.1 ≤ x ≤ 0.4) nano‐ceramics was synthesised via a low‐temperature molten salt method using NaCl as a flux. Rietveld refinement of X‐ray diffraction patterns confirmed the formation of a single‐phase perovskite structure without secondary phases. The FESEM micrographs indicated the uniform granular‐shaped grain morphology of BFO. The XPS revealed the presence of mixed‐valence Fe ions, indicating partial reduction within the BFO lattice. The incorporation of STO suppressed oxygen vacancies, enhancing the dielectric constant (∼151 at 100 kHz for x = 0.4) and reducing the dielectric loss with increasing STO content. M‐H loops exhibited weak ferromagnetic behaviour, attributed to enhanced spin canting and lattice distortion. These results highlight the effective tuning of dielectric and magnetic properties through STO substitution, demonstrating the potential of BFO‐STO ceramics for multifunctional electronic device applications such as spintronics and dielectric storage components.

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Cite This Study

Jahangeer et al. (2026) studied this question.

synapsesocial.com/papers/69af953870916d39fea4c94bhttps://doi.org/10.1049/nde2.70025
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