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Electrical properties of samaria-doped ceria electrolytes from highly active powders

机译:高活性粉末掺杂的掺杂二氧化铈的电解质的电学性质

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摘要

The correlations of the microstructures and the electrical properties of high reactive Ce_(0.8)Sm_(0.2)O_(1.9) (SDC) powders, synthesized via an optimal carbonate coprecipitation method, were investigated. Microstructure of the SDC ceramics sintered at 900-1400℃ showed uniform grain and small grain size, compared with those prepared with various methods under similar sintering conditions. These features may be related to high conductivity (σ_(600℃) = 0.022 Scm~(-1)) and low activation energy for conduction (0.66eV). AC impedance spectra were involved to resolve grain interior and grain boundary resistance. Grain boundary contribution to the total resistance showed the values below 1/2 at 200-450℃, suggesting low grain boundary effect. The motion enthalpy for the grain interior conduction decreased while the association enthalpy increased with sintering temperature up to 1300℃, which might be possibly originated from the increase in lattice parameters with the sintering temperature.
机译:研究了通过最佳碳酸盐共沉淀法合成的高活性Ce_(0.8)Sm_(0.2)O_(1.9)(SDC)粉末的微观结构与电性能的相关性。与在相似的烧结条件下用各种方法制备的SDC陶瓷相比,在900-1400℃烧结的SDC陶瓷的显微组织显示出均匀的晶粒和较小的晶粒尺寸。这些特征可能与高电导率(σ_(600℃)= 0.022 Scm〜(-1))和低导通活化能(0.66eV)有关。交流阻抗谱用于解析晶粒内部和晶界电阻。在200-450℃下,晶界对总电阻的贡献小于1/2,表明晶界效应低。随着1300℃烧结温度的升高,晶粒内部传导的运动焓降低,缔合焓升高,这可能是由于晶格参数随烧结温度的升高而引起的。

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