Journal of Applied Physics · 2013 · 32 citations · 52 references
EngineeringCobalt FerriteGrain SizeFerrofluidMagnetoresistanceMagnetismMetallic Functional MaterialContrary SemiconductivityMaterials SciencePhysicsNanotechnologyMagnetic MaterialFerromagnetismNanomaterialsNatural SciencesApplied PhysicsCondensed Matter PhysicsMetallic MagnetismMagnetic PropertyNanomagnetism
Variations in conductivity with particle size have been observed in cobalt ferrite, when synthesized by solgel auto-combustion method. Impedance analysis reveals metallic and semiconducting behavior at room temperature for a particle size of 6 nm and 52 nm, respectively. Upon thermal activation, metallic to semiconducting phase transition has been observed as a function of particle size and vice-versa. Grainboundary Resistance (Rgb), increased drastically with particle size (19 MΩ for 6 nm and 259 MΩ for 52 nm) at room temperature. AC conductivity and dielectric constants exhibit similar metallic to semiconducting phase transition at 6 nm and semiconducting behavior at 52 nm with temperature in the selected frequencies. Enhanced magnetic moment with an increase in the grain size along with decreased coercivity (1444 G to 1146 G) reveals transition from single domain to multi-domain. Increased inter-particle interaction is responsible for metallicity at the nano level and on the contrary semiconductivity is attributed to bulk.
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Direct Cation- -Cation Interactions in Several Oxides
John B. Goodenough · Physical Review · 1960 · 605 citations