Multifunctional properties of a novel Ba2MnV0.7Zr0.3O6 multiferroic double perovskite

Abstract

A novel double perovskite, Ba2MnV0.7Zr0.3O6, was successfully synthesized via a modified sol–gel method using egg white as a chelating agent and annulled at a temperature of 800 °C. Rietveld refinement of XRD data confirms a monoclinic structure (in the P21/m space group) with an average crystallite size of 56 nm, while EDX analysis verifies the phase purity. Magnetic measurements reveal ferrimagnetic behavior (TC = 42 K, θCW = −80 K). Ferroelectric behavior was observed at low temperature with a remanent polarization (Pr) of 5.48 μC cm−2. DFT calculations confirm the material's stability and semi-metallic nature, showing a narrow band gap of 1.3 eV. Thermoelectric property analysis revealed promising behavior, with the ultimate ZT peak reaching 0.95 at 300 K. For gas sensing, the compound exhibited fast response/recovery times (ethanol: 48.74 s/49.67 s; acetone: 52.39 s/56.32 s) at an optimal operating temperature of 220 °C, along with high sensitivity to low gas concentrations. These multifunctional properties (magnetic, ferroelectric, and gas sensing) position this material as a promising candidate for advanced technological applications.

Graphical abstract: Multifunctional properties of a novel Ba2MnV0.7Zr0.3O6 multiferroic double perovskite

Article information

Article type
Paper
Submitted
06 Sep 2024
Accepted
14 Aug 2025
First published
03 Sep 2025

New J. Chem., 2025, Advance Article

Multifunctional properties of a novel Ba2MnV0.7Zr0.3O6 multiferroic double perovskite

A. Mabrouki, O. Messaoudi, A. Bardaoui, A. S. Aljaloud, L. Alfhaid and E. Dhahri, New J. Chem., 2025, Advance Article , DOI: 10.1039/D4NJ03929G

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