A Review of a Good Binary Ferroelectric Ceramic: BaTiO3–BiFeO3
Обзор перспективной бинарной сегнетоэлектрической керамики BaTiO3–BiFeO3
2021-04-15
SCID: 54.1/53qcme9a
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BaTiO3–BiFeO3barium titanate (BaTiO3)bismuth ferrite (BiFeO3)energy-storage propertiesferroelectric properties
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Abstract (AI)
Barium titanate (BaTiO 3 ) and Bismuth ferrite (BiFeO 3 ) have been investigated for many years. Both of them have good electrical properties in the application of industries such as flexible displays, actuators, transducers, flexible memory, multilayer ceramic capacitors, etc. Moreover, BiFeO 3 is a room temperature multiferroic material that adds a halo to it. Although there are some shortcomings compared with some properties of lead-based ceramics, environmental friendly materials will be the future trend. The solid solution of BaTiO 3 and BiFeO 3 exactly meets this requirement. There are many reports related to it, but there are few systemic articles focused on it. So, this review recalls the progress of binary ferroelectric material: BaTiO 3 –BiFeO 3 ceramic, especially in the field of ferroelectric, piezoelectric, energy-storage properties. Furthermore, the preparation approaches to functional ceramics are also illustrated here. Finally, we deliver a summary of this material.
Key Findings
1
BaTiO3 and BiFeO3 each have strong electrical properties making them useful for devices like flexible displays, actuators, transducers, memories, and multilayer ceramic capacitors.
2
BiFeO3 is a room-temperature multiferroic, adding multifunctional (ferroelectric and magnetic) behavior to the BaTiO3–BiFeO3 solid solution.
3
The BaTiO3–BiFeO3 solid solution is an environmentally friendly alternative to some lead-based ceramics, aligning with future trends away from lead-containing materials.
4
The paper also outlines preparation approaches for functional BaTiO3–BiFeO3 ceramics and provides an overall summary of the material's status and developments.
5
This review systematically summarizes progress on BaTiO3–BiFeO3 ceramics with emphasis on ferroelectric, piezoelectric, and energy-storage properties.
Research Object
BaTiO3–BiFeO3 binary ferroelectric ceramic solid solution
Research Subject
Ferroelectric, piezoelectric and energy-storage properties and preparation approaches of the BaTiO3–BiFeO3 ceramic
Publication Details
Publication Date
2021-04-15
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