Crystals · 2020 · 54 citations · 202 references
Magnetic PropertiesEngineeringChemical ModificationHalide PerovskitesMagnetic OrderingChemistryMagnetic MaterialsPerovskite ModuleMagnetismMultiferroicsFerroelectric ApplicationMaterials EngineeringMaterials ScienceOxide ElectronicsPerovskite MaterialsAurivillius-phase Layered StructureLead-free PerovskitesMagnetic MaterialBinary Bi4ti3o12-bifeo3 SystemNanomaterialsNatural SciencesApplied PhysicsFerroelectric MaterialsMultifunctional ApplicationsFunctional Materials
Driven by potentially photo-electro-magnetic functionality, Bi-containing Aurivillius-type oxides of binary Bi4Ti3O12-BiFeO3 system with a general formula of Bin+1Fen−3Ti3O3n+3, typically in a naturally layered perovskite-related structure, have attracted increasing research interest, especially in the last twenty years. Benefiting from highly structural tolerance and simultaneous electric dipole and magnetic ordering at room temperature, these Aurivillius-phase oxides as potentially single-phase and room-temperature multiferroic materials can accommodate many different cations and exhibit a rich spectrum of properties. In this review, firstly, we discussed the characteristics of Aurivillius-phase layered structure and recent progress in the field of synthesis of such materials with various architectures. Secondly, we summarized recent strategies to improve ferroelectric and magnetic properties, consisting of chemical modification, interface engineering, oxyhalide derivatives and morphology controlling. Thirdly, we highlighted some research hotspots on magnetoelectric effect, catalytic activity, microwave absorption, and photovoltaic effect for promising applications. Finally, we provided an updated overview on the understanding and also highlighting of the existing issues that hinder further development of the multifunctional Bin+1Fen−3Ti3O3n+3 materials.
202
Epitaxial BiFeO <sub>3</sub> Multiferroic Thin Film Heterostructures
Junling Wang, Jeffrey B. Neaton, Haimei Zheng et al. · Science · 2003 · 6.1K citations · Full text
Magnetic control of ferroelectric polarization
T. Kimura, Takeshi Goto, Hiroyuki Shintani et al. · Nature · 2003 · 4.6K citations
Physics and Applications of Bismuth Ferrite
Gustau Catalán, J. F. Scott · Advanced Materials · 2009 · 4.1K citations
The Renaissance of Magnetoelectric Multiferroics
Nicola A. Spaldin, M. Fiebig · Science · 2005 · 2.8K citations
Engineering, Spontaneous Magnetization, Magnetic Resonance +17
Lanthanum-substituted bismuth titanate for use in non-volatile memories
Bae Ho Park, Bo Soo Kang, Sang Don Bu et al. · Nature · 1999 · 2.2K citations
Materials Science, Engineering, Lanthanum-substituted Bismuth Titanate +4