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Co^(2+) substituted Mg–Cu–Zn ferrite: Evaluation of structural,magnetic,and electromagnetic properties 被引量:4

Co^(2+) substituted Mg–Cu–Zn ferrite: Evaluation of structural,magnetic,and electromagnetic properties
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摘要 We report the synthesis of Co^(2+)substituted Mg–Cu–Zn ferrite via citrate gel combustion process and thereby its structural,transport,and magnetic properties for the use in electromagnetic energy absorption application.The polycrystalline ferrite system is investigated by interplay of stoichiometric composition with Mg_(0.25–x)Co_x Cu_(0.25)Zn_(0.5)Fe_2O_4(0≤x≤0.25).Structural investigations using X-ray diffraction(XRD)and selected area electron diffraction(SAED)reveal the formation of spinel structure with linear growth of lattice constant due to Co^(2+)substitution.The microstructural analysis(TEM and SEM)depicts the dense microstructure with the average grain size of 0.42–1.25μm.The elemental analysis(EDS)confirms the elemental composition of the as-prepared ferrite with respect to the initial concentrations of the synthetic composition used.The observed variations in initial permeability(μ_i)and magnetic moment(_Bn)are explained based on deviation in saturation magnetization(M_s),anisotropy constant(_1K),density values,and exchange interaction.The temperature dependence of DC resistivity confirms the semiconducting behavior of the as-prepared ferrite material,with an increase in the DC resistivity by an incorporation of cobalt.Furthermore,the effects of adding Co^(2+)on the Curie temperature,frequency dependent dielectric properties of the ferrite material are also discussed. We report the synthesis of Co^(2+)substituted Mg–Cu–Zn ferrite via citrate gel combustion process and thereby its structural,transport,and magnetic properties for the use in electromagnetic energy absorption application.The polycrystalline ferrite system is investigated by interplay of stoichiometric composition with Mg_(0.25–x)Co_x Cu_(0.25)Zn_(0.5)Fe_2O_4(0≤x≤0.25).Structural investigations using X-ray diffraction(XRD)and selected area electron diffraction(SAED)reveal the formation of spinel structure with linear growth of lattice constant due to Co^(2+)substitution.The microstructural analysis(TEM and SEM)depicts the dense microstructure with the average grain size of 0.42–1.25μm.The elemental analysis(EDS)confirms the elemental composition of the as-prepared ferrite with respect to the initial concentrations of the synthetic composition used.The observed variations in initial permeability(μ_i)and magnetic moment(_Bn)are explained based on deviation in saturation magnetization(M_s),anisotropy constant(_1K),density values,and exchange interaction.The temperature dependence of DC resistivity confirms the semiconducting behavior of the as-prepared ferrite material,with an increase in the DC resistivity by an incorporation of cobalt.Furthermore,the effects of adding Co^(2+)on the Curie temperature,frequency dependent dielectric properties of the ferrite material are also discussed.
出处 《Journal of Advanced Ceramics》 SCIE CSCD 2018年第3期207-217,共11页 先进陶瓷(英文)
基金 BCUD, Savitribai Phule Pune University for providing research funding (Grant No. RG-31)
关键词 Co-Mg-Cu-Zn FERRITE SPINEL phase electrical RESISTIVITY saturation MAGNETIZATION anisotropy constant CURIE temperature Co–Mg–Cu–Zn ferrite spinel phase electrical resistivity saturation magnetization anisotropy constant Curie temperature
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