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Magnetoelectric Coupling Effect in Ferroelectric and Ferromagnetic Hybrid Thin Films

机译:铁电和铁磁混合薄膜中的磁电耦合效应

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Magnetoelectric (ME) effect in multiferroic or ferroelectric/ferromagnetic composite thin films occurs through the elastic coupling between the piezoelectric properties of ferroelectric and magnetostrictive properties of ferromagnetic component. To obtain high elastic coupling and ME effect, we introduced PZT [Pb(Zr_(0.52), Ti_(0.48))O_3] as a ferroelectric materials and CuFO (CuFe_2O_4) as ferromagnetic materials because of their high piezoelectric coefficient and magnetostrictive properties among various metal-oxide materials. To evaluate ME effect, we prepared CuFO/Pt/PZT/Pt hybrid thin films directly on Pt/TiO_2/SiO_2/Si substrate by using ion beam sputtering and spin-coating method. We investigated the microstructures and morphologies of hybrid thin films by XRD and SEM, the ferroelectric and ferromagnetic behaviors of hybrid films were examined by measuring polarization and magnetization hysteresis loops vs. electric and magnetic field. Magnetoelectric coefficients were calculated by measured magnetoelectric voltages using magnetoelectric measurement system. In this research, we 'll discuss the relations between annealing temperatures and multiferroic properties.
机译:多铁性或铁电/铁磁复合薄膜中的磁电(ME)效应是通过铁电体的压电特性与铁磁组件的磁致伸缩特性之间的弹性耦合而发生的。为了获得高弹性耦合和ME效果,我们引入了PZT [Pb(Zr_(0.52),Ti_(0.48))O_3]作为铁电材料,以及CuFO(CuFe_2O_4)作为铁磁材料,因为它们在各种压电材料中具有较高的压电系数和磁致伸缩性能金属氧化物材料。为了评价ME的效果,我们采用离子束溅射和旋涂法直接在Pt / TiO_2 / SiO_2 / Si衬底上制备了CuFO / Pt / PZT / Pt杂化薄膜。我们通过XRD和SEM研究了混合薄膜的微观结构和形态,通过测量极化和磁化磁滞回线与电场和磁场的关系,研究了混合薄膜的铁电和铁磁行为。磁电系数是通过使用磁电测量系统测量的磁电电压来计算的。在这项研究中,我们将讨论退火温度和多铁性之间的关系。

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