Soudani Ibtihel, Ben Brahim Khawla, Oueslati Abderrazek, Aydi Abdelhedi, Khirouni Kamel, Benali A, Dhahri E, Valente M A
Laboratory of Multifunctional Materials and Applications (LaMMA), LR16ES18, Faculty of Sciences of Sfax, University of Sfax BP 1171 3000 Sfax Tunisia.
Laboratory for Spectroscopic and Optical Characterization of Materials (LaSCOM), Faculty of Sciences, University of Sfax B. P. 1171 3000 Sfax Tunisia
RSC Adv. 2023 Mar 20;13(14):9260-9272. doi: 10.1039/d3ra00985h.
Ferrite compounds have recently attracted significant interest because of their multifunctional properties. This work investigates the optical, magnetic, and dielectric properties of a LiMnFeO ferrite prepared by a solid-state reaction. Raman spectroscopy analysis substantiated the presence of the 5 active modes representing the vibration of the oxygen anion at both tetrahedral and octahedral sites. The direct optical band gap was estimated to be 3.51 eV, which indicates the semiconductor behavior of the compound. A theoretical modulation of the hysteresis loop was done to confirm the dominance of the ferromagnetic contribution over the antiferromagnetic one. Furthermore, the dielectric permittivity result indicated a colossal value of the order of 10. The dielectric losses are characterized by the Giuntini law to extract the relaxation process, which is hidden by the DC-conductivity process. Our results indicate the potential of LiMnFeO for applications in multifunctional devices.
铁氧体化合物因其多功能特性最近引起了极大的关注。本工作研究了通过固态反应制备的LiMnFeO铁氧体的光学、磁性和介电性能。拉曼光谱分析证实了存在5种活性模式,代表了氧阴离子在四面体和八面体位点的振动。直接光学带隙估计为3.51 eV,这表明该化合物具有半导体行为。对磁滞回线进行了理论调制,以确认铁磁贡献相对于反铁磁贡献的主导地位。此外,介电常数结果表明其值高达10量级。通过Giuntini定律对介电损耗进行表征,以提取被直流传导过程掩盖的弛豫过程。我们的结果表明LiMnFeO在多功能器件应用中的潜力。