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Room-temperature simultaneously enhanced magnetization and electric polarization in BiFeO3 ceramic synthesized by magnetic annealing
Luo WJ(罗万居)
刊名APPLIED PHYSICS LETTERS
2009
通讯作者罗万居
中文摘要Multiferroic BiFeO3 ceramics were synthesized by high temperature magnetic annealing using nanosized precursor powders prepared through microwave combustion. Simultaneously enhanced magnetization and electric polarization were observed at room temperature in the sample annealed under an external magnetic field of 10 T. These enhanced properties might be originated from a spin structure severely modulated or the low temperature magnetic phase driven up to room temperature and above by the large external annealing magnetic fields. These results demonstrate that the strong magnetic annealing method is an alternative way to synthesize high performance BiFeO3 materials.
学科主题材料合成与加工工艺
收录类别1
公开日期2010-09-29
附注Multiferroic BiFeO3 ceramics were synthesized by high temperature magnetic annealing using nanosized precursor powders prepared through microwave combustion. Simultaneously enhanced magnetization and electric polarization were observed at room temperature in the sample annealed under an external magnetic field of 10 T. These enhanced properties might be originated from a spin structure severely modulated or the low temperature magnetic phase driven up to room temperature and above by the large external annealing magnetic fields. These results demonstrate that the strong magnetic annealing method is an alternative way to synthesize high performance BiFeO3 materials.
内容类型期刊论文
源URL[http://ir.iee.ac.cn/handle/311042/327]  
专题电工研究所_超导材料及强磁场科学研究组_超导材料及强磁场科学研究组_期刊论文
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GB/T 7714
Luo WJ. Room-temperature simultaneously enhanced magnetization and electric polarization in BiFeO3 ceramic synthesized by magnetic annealing[J]. APPLIED PHYSICS LETTERS,2009.
APA 罗万居.(2009).Room-temperature simultaneously enhanced magnetization and electric polarization in BiFeO3 ceramic synthesized by magnetic annealing.APPLIED PHYSICS LETTERS.
MLA 罗万居."Room-temperature simultaneously enhanced magnetization and electric polarization in BiFeO3 ceramic synthesized by magnetic annealing".APPLIED PHYSICS LETTERS (2009).
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