首页> 外文期刊>Magnetics, IEEE Transactions on >Magnetization, Magnetoelectric Effect, and Structure Transition in $hbox{BiFeO}_{3}$ and $(hbox{Bi}_{0.95}hbox{La}_{0.05})hbox{FeO}_{3}$ Multiferroic Ceramics
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Magnetization, Magnetoelectric Effect, and Structure Transition in $hbox{BiFeO}_{3}$ and $(hbox{Bi}_{0.95}hbox{La}_{0.05})hbox{FeO}_{3}$ Multiferroic Ceramics

机译:$ hbox {BiFeO} _ {3} $和$(hbox {Bi} _ {0.95} hbox {La} _ {0.05})hbox {FeO} _ {3} $中的磁化,磁电效应和结构转变

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Magnetization, grain size, x-ray diffraction, and dielectric permittivity of ${rm BiFeO}_{3}$ (BFO) and 5 mol% lanthanum-substitution BFO $[({rm Bi}_{0.95}{rm La}_{0.05}){rm FeO}_{3}]$ ceramics have been carried out as a function of sintering temperature (910–950$^{circ}{rm C}$) BFO ceramic exhibits an antiferromagnetic behavior, whose magnetization curve is linear with the field at room temperature. A weak ferromagnetic behavior occurs in $({rm Bi}_{0.95}{rm La}_{0.05}){rm FeO}_{3}$ (BLFO) ceramics at room temperature, in which remanent magnetization increases from 0.008 to 0.14 as sintering temperature raises from 910 to 950 $^{circ}{rm C}$. This phenomenon can be correlated with the growth of grain size of BLFO ceramics, which grows with increasing sintering temperature. The dielectric permittivities of BFO and BLFO are about 33 and 57 at room temperature, respectively. The dielectric losses $(tandelta)$ of BFO and BLFO ceramics vary respectively in the ranges of $sim$0.2–0.4 and $sim$0.002–0.004 below 150$^{circ}{rm C}$ , indicating that 5 mol% La-substitution can efficiently reduce electric conductivity. A frequency-dependent and broad dielectric maximum was observed in both BFO and BLFO ceramics upon heating. This dielectric response is likely triggered by the antiferromagnetic-paramagnetic transition near the Néel temperatur-n-ne.
机译:$ {rm BiFeO} _ {3} $(BFO)和5 mol%镧取代BFO $ [({rm Bi} _ {0.95} {rm La}}的磁化,粒度,x射线衍射和介电常数_ {0.05}){rm FeO} _ {3}] $陶瓷作为烧结温度的函数(910–950 $ ^ {circ} {rm C} $)已被执行。BFO陶瓷表现出反铁磁性能,其磁化强度曲线与室温下的磁场呈线性关系。室温下$({rm Bi} _ {0.95} {rm La} _ {0.05}){rm FeO} _ {3} $(BLFO)陶瓷中会发生弱铁磁行为,其中剩余磁化强度从0.008增加到烧结温度从910 $ ^ {circ} {rm C} $升高0.14。这种现象可能与BLFO陶瓷晶粒尺寸的增长有关,而后者随着烧结温度的升高而增长。在室温下,BFO和BLFO的介电常数分别约为33和57。 BFO和BLFO陶瓷的介电损耗$(tandelta)$分别在低于150 $ ^ {circ} {rm C} $的$ sim $ 0.2-0.4和$ sim $ 0.002-0.004的范围内变化,表明5 mol%La-取代可以有效地降低电导率。加热后,在BFO和BLFO陶瓷中均观察到频率相关的宽介电最大值。 Néel温度-n-ne附近的反铁磁-顺磁跃迁可能触发这种介电响应。

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