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Dielectric behavior of nano-structured and bulk Li Ni Zn ferrite samples
Authors:S.A. Saafan  S.T. Assar
Affiliation:1. Physics Department, Faculty of Science, Tanta University, Tanta, Egypt;2. Engineering Physics and Mathematics Department, Faculty of Engineering, Tanta University, Tanta, Egypt
Abstract:The ac conductivity and dielectric properties of spinel ferrite nanoparticles of Li0.1(Ni1−xZnx)0.8Fe2.1O4 (x=0.0–1.0) prepared by the chemical co-precipitation method were investigated as functions of frequency and temperature by using a complex impedance technique. Parts of the precipitated powders were pressed into a disk-shape and were sintered at 1473 K for 2 h to increase the particle size to the bulk scale (dimensions >100 nm). The ac conductivity of the samples increases with increasing temperature, ensuring the semiconducting behavior of both nano and bulk samples, in agreement with the Koops model to describe heterogeneous structures. The significant decrease in ac conductivity σac, dielectric constant, and dielectric loss of the as-prepared nanosamples compared to their bulk counterparts is correlated to the small size of the grain compared to the grain boundary size. This might be useful for many applications requiring the reduction of eddy current effects.
Keywords:Ferrites   Nanoparticles   AC conductivity   Dielectric constant   Loss factor
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