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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Dielectric Behavior and Electro-Magnetic Coupling at Room Temperature in BiFeO3/PVDF and CoFe2O4/PVDF Composites
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Dielectric Behavior and Electro-Magnetic Coupling at Room Temperature in BiFeO3/PVDF and CoFe2O4/PVDF Composites

机译:BIFEO3 / PVDF和COFE2O4 / PVDF复合材料室温度下电介质行为和电磁耦合

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摘要

The dielectric properties of composites formed by dispersions of two types of ceramic particles, BiFeO3 (multiferroic) and CoFe2O4 (magnetic), in poly(vinylidene fluoride), PVDF, (which can present a ferroelectric phase) were studied at room temperature as a function of particle concentration. The characterization studies include determination of dielectric polarization curves in the presence of external magnetic fields, H (that is, P-E plots in the presence of H, where P is the dielectric polarization and E the external applied electric field). Impedance spectroscopy analysis shows the presence of several distributions of dipolar relaxation processes, some of which are assigned to charge rearrangements at the different interfaces of the system, for example at the ceramic-polymer interfaces. Negative magneto-electric coupling was observed at low ceramic proportion (where leakage currents are lower than 20 nA/cm(2)), that is, decrease of P when applying H, (partial derivative P/partial derivative H)(E) 0. The negative coupling is opposite to previously observed for BiFeO3 dispersed in a nonferroelectric matrix (styrene-butadiene-rubber, SBR) where (partial derivative P/partial derivative H)(E) 0 . These results suggest a strong polymer-particle interaction, where the interfaces between the two components play a central role. The observation of negative magneto-electric suggests a matrix-mediated coupling, possibly through a magneto-striction mechanism at the ceramic-polymer interfaces. The description of magneto-electric coupling on the bases of magnetostriction effects leads to the conclusion that the results in PVDF and SBR are in agreement with positive magnetostriction, that is positive strains (elongation) when a magnetic field is applied.
机译:通过两种类型的陶瓷颗粒的分散体形成的复合物的介电性能,的BiFeO 3(多铁)和铁酸钴(磁的),在聚(偏二氟乙烯),聚偏氟乙烯,(其可呈现铁电相)在室温下进行了研究作为函数的颗粒浓度。表征研究包括在外部磁场的存在下的电介质极化曲线的测定,H(即,在H,其中P是电介质极化和E的外部施加的电场的存在P-E曲线)。阻抗谱分析表明偶极弛豫过程的几个分布,其中的一些在陶瓷 - 聚合物接口分配给电荷重排在该系统的不同接口,例如存在。在低的陶瓷比例(其中,漏电流是低于20 NA /厘米(2)),即,施加H,(偏导数P /偏导1H)当P的减少(E)℃下,观察到负磁电耦合; 0负耦合相反先前观察到的BiFeO3分散在非铁基质(苯乙烯 - 丁二烯 - 橡胶,SBR),其中(偏导数P /偏导H)(E)< 0。这些结果表明较强的聚合物 - 颗粒相互作用,其中,所述两个组件之间的接口发挥中心作用。负磁电的观察表明一个矩阵介导的偶联,可能通过在陶瓷 - 聚合物界面的磁致伸缩机构。磁致伸缩效应引线的结论是,在PVDF和SBR的结果与正磁致伸缩协议基部磁电耦合的描述,即阳性菌株(伸长率),当施加的磁场。

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