Magnetic, Antiferroelectric-like Behavior and Resistance Switching Properties in BiFeO3-CaMnO3 Polycrystalline Thin Films

Author:

Lahmar Abdelilah1ORCID,Zidani Jacem1,Belhadi Jamal1,Alaoui Ilham Hamdi1ORCID,Musleh Hussam2,Asad Jehad2,Al Dahoudi Naji2,El Marssi Mimoun1ORCID

Affiliation:

1. Condensed Matter Physics Laboratory (LPMC), University of Picardie Jules Verne, 33 Rue Saint Leu, 80000 Amines, France

2. Physics Department, Al Azhar University-Gaza, Gaza P.O. Box 1277, Palestine

Abstract

The effect of ferromagnetic CaMnO3 (CMO) addition to structural, magnetic, dielectric, and ferroelectric properties of BiFeO3 is presented. X-ray diffraction and Raman investigation allowed the identification of a single pseudocubic perovskite structure. The magnetic measurement showed that the prepared films exhibit a ferromagnetic behavior at a low temperature with both coercive field and remnant magnetization increased with increasing CMO content. However, a deterioration of magnetization was observed at room temperature. Ferroelectric study revealed an antiferroelectric-like behavior with a pinched P–E hysteresis loop for 5% CMO doping BFO, resulting in low remnant polarization and double hysteresis loops. Whereas, high remnant polarization and coercive field with a likely square hysteresis loop are obtained for 10% CMO addition. Furthermore, a bipolar resistive switching behavior with a threshold voltage of about 1.8 V is observed for high doped film that can be linked to the ferroelectric polarization switching.

Funder

PHC AL MAQDISI 2021

Publisher

MDPI AG

Subject

General Materials Science

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