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- W3001679534 endingPage "166449" @default.
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- W3001679534 abstract "The conventional solid-state reaction method was used to synthesize the xLi0.1Ni0.3Cu0.1Zn0.4Fe2.1O4+(1−x)Ba0.95Sm0.05Ti0.95Dy0.05O3 multiferroic composites. X-ray diffraction patterns confirmed the coexistence of the constituent phases in the composites. Field Emission Scanning Microscopy images showed that the average grain size increased with the ferrite content in composites. The compositional study confirmed that the proportion of the components is well compatible with their nominal compositions. The real part of the initial permeability was found to increase, but the magnetic loss decreased with ferrite content. The dielectric dispersion was observed at lower frequencies on account of interfacial polarization. The maximum dielectric constant of about 6.7 × 103 was found for the value of x = 0.60 at 1 kHz. The ac conductivity followed the Jonscher’s power law, and the conduction was due to the small polaron hopping. The impedance spectroscopy analysis confirmed that both the grains and grain boundaries affected the conduction for samples with x = 0.40, 0.50 and 0.60, while only grain boundary was the dominating factor for the other samples. Polarization-electric field curves (P-E) confirmed that the samples up to x = 0.20 had a good ferroelectric nature with a maximum saturation polarization of 0.34 µC/cm2 and the rest had lossy behavior. The highest magnetoelectric (ME) voltage coefficient was found to be 170 × 103 Vm−1T−1 for x = 0.10." @default.
- W3001679534 created "2020-01-30" @default.
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- W3001679534 date "2020-05-01" @default.
- W3001679534 modified "2023-10-18" @default.
- W3001679534 title "An experimental insight of the multiferroic properties of magnetoelectrically coupled xLNCZFO+(1−x)BSTDO composites" @default.
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- W3001679534 doi "https://doi.org/10.1016/j.jmmm.2020.166449" @default.
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