Anomalous electrical relaxation and polaron conduction in nano-crystalline Mn0.5Zn0.5Fe2O4

N. Kumar, T. Shahid, G. Govindaraj
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引用次数: 1

Abstract

Nano-crystalline Mn0.5Zn0.5Fe2O4 was synthesized by chemical co-precipitation method and characterized with X-ray diffraction. Ac electrical impedance data are taken for the frequency range of 1Hz to 1MHz for various temperatures from 303K to 483K. The ac electrical conduction deviates from the Debye type relaxation which indicates polaron type conduction. In the present study unique anomalous relaxation function in time and frequency domain is used to investigate deviation from the Debye relaxation. The physical basis of anomalous or non-Debye process is explained in terms of change in Debye dipole μD=ρrD of charge ρ into gρ due to the molecular charge interaction and defect disorder. This interaction shifts the Debye relaxation rate τ to a slow relaxation rate τg. The fraction 0
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纳米晶体Mn0.5Zn0.5Fe2O4的异常电弛豫和极化子传导
采用化学共沉淀法合成了纳米晶体Mn0.5Zn0.5Fe2O4,并用x射线衍射对其进行了表征。交流电阻抗数据的频率范围为1Hz至1MHz,适用于303K至483K的各种温度。交流导电偏离德拜型弛豫,表明极化子型导电。在本研究中,利用时域和频域上独特的反常松弛函数来研究偏离德拜松弛。从分子电荷相互作用和缺陷无序导致的电荷ρ在德拜偶极子μD=ρ rd变为gρ的变化,解释了反常或非德拜过程的物理基础。这种相互作用使德拜弛豫速率τ变为慢弛豫速率τg。得到分数0
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