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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Dielectric, Complex Impedance, and Electrical Transport Properties of Erbium (Er3+) Ion-Substituted Nanocrystalline, Cobalt-Rich Ferrite (Co1.1Fe1.9-xErxO4)
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Dielectric, Complex Impedance, and Electrical Transport Properties of Erbium (Er3+) Ion-Substituted Nanocrystalline, Cobalt-Rich Ferrite (Co1.1Fe1.9-xErxO4)

机译:b(Er3 +)离子取代的纳米晶,富钴铁氧体(Co1.1Fe1.9-xErxO4)的介电常数,复阻抗和电传输性质

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摘要

Erbium (Er3+) substituted nanocrystalline, cobalt-rich ferrites, which can be represented chemically as Co1.1Fe1.9-xErxO4 (CFEO; x = 0.0-0.2), were synthesized by the sol-gel autocombustion method. The structural, dielectric, and electrical transport properties of CFEO were investigated in detail. CFEO materials crystallize in a spinel cubic structure for x <= 0.10; formation of orthoferrite (ErFeO3) secondary phase was noted for x >= 0.15. Microstructural and compositional studies revealed the formation of spherical, elongated grains with stoichiometric presence of Co, Fe, Er, and O. The dielectric constant (epsilon') dispersion fits to the Debye's function for all CFEO ceramics. The relaxation time and spread factor obtained from epsilon' dispersion are similar to 1.0(-3)s and similar to 0.50 (+/- 0.10), respectively. The complex impedance analyses confirm a grain-interior mechanism contributing to the dielectric properties. Semiconducting behavior and small polaron conduction mechanism were evident in electrical transport properties of CFEO materials.
机译:通过溶胶-凝胶自燃法合成了((Er3 +)取代的纳米晶,富钴铁氧体,其化学表示为Co1.1Fe1.9-xErxO4(CFEO; x = 0.0-0.2)。详细研究了CFEO的结构,介电和电传输性能。 CFEO材料以尖晶石立方结构结晶,x≤0.10;对于x> = 0.15,注意到正铁素体(ErFeO 3)第二相的形成。微观结构和成分研究表明,形成了球形,细长的晶粒,化学计量存在Co,Fe,Er和O。介电常数(ε')分散度适合所有CFEO陶瓷的Debye函数。从ε'分散获得的弛豫时间和扩展因子分别类似于1.0(-3)s和近似0.50(+/- 0.10)。复阻抗分析证实了晶粒内部机制有助于介电性能。 CFEO材料的电输运性能具有明显的半导体行为和小的极化子传导机理。

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