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Recent Progress in Multiferroic Magnetoelectric Composites: from Bulk to Thin Films

Advanced Materials · 2011 · Vol. 23(9) · pp. 1062–1087
Jing MaJia‐Mian HuZheng LiCe‐Wen Nan

Abstract

Multiferroic magnetoelectric composite systems such as ferromagnetic-ferroelectric heterostructures have recently attracted an ever-increasing interest and provoked a great number of research activities, driven by profound physics from coupling between ferroelectric and magnetic orders, as well as potential applications in novel multifunctional devices, such as sensors, transducers, memories, and spintronics. In this Review, we try to summarize what remarkable progress in multiferroic magnetoelectric composite systems has been achieved in most recent few years, with emphasis on thin films; and to describe unsolved issues and new device applications which can be controlled both electrically and magnetically.

Multiferroics and related materialsFerroelectric and Piezoelectric MaterialsDielectric properties of ceramicsMultiferroicsMaterials scienceSpintronicsFerroelectricityMagnetoelectric effectThin filmNanotechnologyFerromagnetismCoupling (piping)Engineering physics

MeSH terms

AlloysCeramicsElectricityMagneticsPolymersElectrical Equipment and Supplies
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References
Physics and Applications of Bismuth Ferrite
Advanced Materials · 2009 · 4,130 citations
Why Are There so Few Magnetic Ferroelectrics?
The Journal of Physical Chemistry B · 2000 · 3,690 citations
The emergence of spin electronics in data storage
Nature Materials · 2007 · 2,466 citations
Revival of the magnetoelectric effect
Journal of Physics D Applied Physics · 2005 · 4,994 citations
The single-phase multiferroic oxides: from bulk to thin film
Journal of Physics Condensed Matter · 2005 · 657 citations
Multiferroics: a magnetic twist for ferroelectricity
Nature Materials · 2007 · 4,496 citations
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