首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Exchange bias in bismuth ferrite/cobalt ferrite Janus nanofibers
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Exchange bias in bismuth ferrite/cobalt ferrite Janus nanofibers

机译:铋铁氧体/钴铁氧体Janus纳米纤维的交换偏见

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Bismuth ferrite: cobalt ferrite (BiFeO3: CoFe2O4) nanofibers with tailorable exchange bias effects were synthesized utilizing a Janus type morphology, wherein both phases are coupled longitudinally along the length of each fiber. By varying the relative phase amounts of BiFeO3 and CoFe2O4 of the fibers, the interfacial area between the phases could be tuned and thereby the magnitude of exchange bias effects could also be tuned. Each BiFeO3: CoFe2O4 wt% fiber system exhibited characteristic exchange bias effects, specifically increased anisotropy and coercivity. HE, the magnitude of the shift in the center of the field cooled hysteresis loops, was found to have a direct relationship with interfacial area with a similar minimum for a 50 : 50 wt% sample and maximized as either phase weight percent was decreased.
机译:铋铁氧体:钴铁氧体(BiFeO3:Cofe2O4)具有可定制的交换偏置效应的纳米纤维是利用Janus型形态合成的,其中两个相沿每个纤维的长度纵向耦合。 通过改变纤维的BiFeO3和Cofe2O4的相对相位量,可以调谐相之间的界面区域,从而可以调整交换偏差效应的大小。 每个BIFEO3:COFE2O4 WT%光纤系统表现出特征交换偏置效应,特别是增加各向异性和矫顽力。 他,发现现场冷却滞后环的中心的换档的大小与具有相似最小的样品的界面区域具有直接关系,并且随着相重量百分比降低而最大化。

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