Misiurev Denis, Kaspar Pavel, Holcman Vladimír
Department of Physics, Faculty of Electrical Engineering and Communication, Brno University of Technology, Technicka 2848/8, 61600 Brno, Czech Republic.
Materials (Basel). 2022 Dec 7;15(24):8719. doi: 10.3390/ma15248719.
This paper will provide a brief overview of the unique multiferroic material Bismuth ferrite (BFO). Considering that Bismuth ferrite is a unique material which possesses both ferroelectric and magnetic properties at room temperature, the uniqueness of Bismuth ferrite material will be discussed. Fundamental properties of the material including electrical and ferromagnetic properties also will be mentioned in this paper. Electrical properties include characterization of basic parameters considering the electrical resistivity and leakage current. Ferromagnetic properties involve the description of magnetic hysteresis characterization. Bismuth ferrite can be fabricated in a different form. The common forms will be mentioned and include powder, thin films and nanostructures. The most popular method of producing thin films based on BFO materials will be described and compared. Finally, the perspectives and potential applications of the material will be highlighted.
本文将简要概述独特的多铁性材料铋铁氧体(BFO)。鉴于铋铁氧体是一种在室温下同时具有铁电和磁性特性的独特材料,将讨论铋铁氧体材料的独特之处。本文还将提及该材料的基本特性,包括电学和铁磁特性。电学特性包括考虑电阻率和漏电流的基本参数表征。铁磁特性涉及磁滞特性的描述。铋铁氧体可以制成不同的形式。将提及常见的形式,包括粉末、薄膜和纳米结构。将描述并比较基于BFO材料制备薄膜的最常用方法。最后,将突出该材料的前景和潜在应用。