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首页> 外文期刊>Physica, B. Condensed Matter >Ionic conductivity and electrical relaxation of nanocrystalline scandia-stabilized c-zirconia using complex impedance analysis
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Ionic conductivity and electrical relaxation of nanocrystalline scandia-stabilized c-zirconia using complex impedance analysis

机译:复阻抗分析法研究纳米晶scan稳定c-氧化锆的离子电导率和电弛豫

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摘要

A solid solution of 8 mol% of scandia-stabilized cubic-zirconia (8ScSZ) has been prepared by co-precipitation technique. The synthesized powder has an average crystallite size similar to 40 nm, surface area of 8.49 m(2)/g, and agglomerated particle size of 150 nm. The activation energy of 8ScSZ has been calculated from impedance loss spectra; electrical modulus spectra are in the range of 0.90-1.30 eV. The frequency and temperature-dependent conductivities and impedance were measured in range of 50 Hz-1 MHz and 300-900 K, respectively. Complex impedance spectra, complex modulus formalism and complex conductivity spectra have been carefully analyzed in order to separate the grain, grain boundary and electrode-electrolyte effects. Analysis of ac impedance data using complex impedance indicates a typical negative temperature coefficient of resistance (NTCR) behavior of the materials. The intrinsic conductivity is mainly due to hopping of mobile ions among the available localized site. Relaxation time obtained from complex conductivity spectra are matched well with the impedance loss and modulus loss spectra. Impedance analysis suggests the presence of temperature-dependent electrical relaxation process in the material.
机译:通过共沉淀技术制备了8 mol%的scan稳定的立方氧化锆(8ScSZ)固溶体。合成粉末的平均微晶尺寸类似于40 nm,表面积为8.49 m(2)/ g,附聚颗粒尺寸为150 nm。根据阻抗损耗谱计算了8ScSZ的激活能;电模量谱在0.90-1.30 eV的范围内。频率和温度相关的电导率和阻抗分别在50 Hz-1 MHz和300-900 K的范围内测量。仔细分析了复数阻抗谱,复数模量形式学和复数电导率谱,以分离出晶粒,晶界和电极电解质效应。使用复数阻抗分析交流阻抗数据表明材料的典型负电阻温度系数(NTCR)性能。本征电导率主要是由于可移动离子在可用的局部位点之间跳跃。从复数电导率谱获得的弛豫时间与阻抗损耗和模量损耗谱非常匹配。阻抗分析表明材料中存在温度相关的电弛豫过程。

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