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Multiferroicity and magnetoelectric coupling in ferrite-ferroelectric particulate ceramics

机译:铁氧体-铁电颗粒陶瓷中的多铁性和磁电耦合

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Nontoxic lead-free magnetoelectric ceramics were successfully prepared by incorporating the dispersed ferromagnetic Ni-ferrite particles into (K0.5Na0.5)NbO3-based ferroelectric matrix. The multiferroicity of the ceramics were verified by P-E loops and magnetic hysteresis loops. Dielectric properties and magnetoelectric coefficients as a function of frequency were measured in the range of 100 Hz to 100 kHz. The relative dielectric constant, loss tangent and magnetoelectric coefficients decrease rapidly with very high values at lower frequencies and decrease slowly with very low values at higher frequencies. The dependence of the magnetoelectric effects on dc bias magnetic field shows that both the direct and converse magnetoelectric effects increases initially with the increase in magnetic field and then decreases with the further increase in the field. It is still observed that the frequency and field dependence of direct and converse magnetoelectric effects display almost the same behaviors.
机译:通过将分散的铁磁镍铁氧体颗粒掺入(K 0.5 Na 0.5 )NbO 3 基成功地制备了无毒无铅磁电陶瓷铁电基质。陶瓷的多铁性通过P-E回路和磁滞回线进行了验证。在100 Hz至100 kHz的范围内测量介电性能和磁电系数随频率的变化。相对介电常数,损耗角正切和磁电系数在较低频率下以非常高的值迅速下降,而在较高频率下以非常低的值缓慢下降。磁电效应对直流偏置磁场的依赖性表明,直接和反向磁电效应最初随磁场的增加而增加,然后随磁场的进一步增加而减小。仍然观察到,正,反磁电效应的频率和磁场依赖性显示出几乎相同的行为。

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