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首页> 外文期刊>Journal of Superconductivity and Novel Magnetism >Structural, Electrical and Dielectric Properties of Co–Mn Spinel Nanoferrites Prepared by Co-precipitation Technique
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Structural, Electrical and Dielectric Properties of Co–Mn Spinel Nanoferrites Prepared by Co-precipitation Technique

机译:共沉淀技术制备的钴锰尖晶石纳米铁氧体的结构,电和介电性能

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摘要

Cobalt manganese nanoceramics with nominal composition Co1−x Mn x Fe2O4 (x=0.00, 0.15, 0.30, 0.45, 0.60, 0.75) were synthesized by a chemical coprecipitation technique. The X-ray diffraction patterns revealed the cubic spinel structure. The average crystallite size from the Sherrer formula was in the range of 28 nm–56 nm. The lattice parameter increased with a concentration of manganese. Scanning electron microscopy (SEM) was used for microstructural study. The electrical properties such as electrical resistivity (ρ), drift mobility (μ d), and activation energy (ΔE) were measured using a two-probe apparatus in the temperature range 323–573 K. The electrical resistivity decreased with temperature and manganese concentration. The dielectric constant (ε′), loss factor or imaginary loss (ε″) and dielectric tangent loss (tan δ) were measured at room temperature using a LCR meter in the frequency range 100 Hz to 5 MHz. All the dielectric parameters decreased with increasing frequency. The AC electrical conductivity (σ ac) was calculated from the dielectric measurements. It increases with increase of frequency and manganese concentration. The increase in electrical conductivity may be attributed to the formation of Co+3 and Mn+3 from Co+2 and Mn+3, respectively, at both A and B sites.
机译:通过化学共沉淀法合成名义组成为Co1-x Mn x Fe2 O4 (x = 0.00,0.15,0.30,0.45,0.60,0.75)的钴锰纳米陶瓷技术。 X射线衍射图显示立方尖晶石结构。 Sherrer公式的平均微晶尺寸为28 nm–56 nm。晶格参数随锰浓度的增加而增加。扫描电子显微镜(SEM)用于微观结构研究。使用双探针设备在323–573 K的温度范围内测量电性能,如电阻率(ρ),漂移迁移率(μd )和活化能(ΔE)。温度和锰浓度。在室温下,使用LCR计在100Hz至5MHz的频率范围内测量介电常数(ε'),损耗因子或虚损耗(ε'')和介电正切损耗(tanδ)。所有介电参数随频率增加而降低。由电介质测量值计算出AC电导率(σac )。它随频率和锰浓度的增加而增加。电导率的增加可能是由于在A和A处分别从Co + 2 和Mn + 3 形成了Co + 3 和Mn + 3 B网站。

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