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首页> 外文期刊>Journal of Fuel Cell Science and Technology >Synthesis of Y0.2ZrXCe0.8−XO1.9 Electrolytes From the Sol-Gel Method for Intermediate Temperature URSOFC Application
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Synthesis of Y0.2ZrXCe0.8−XO1.9 Electrolytes From the Sol-Gel Method for Intermediate Temperature URSOFC Application

机译:中温URSOFC应用的溶胶-凝胶法合成Y0.2ZrXCe0.8-XO1.9电解质

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A series of Y0.2ZrxCe0.8−xO1.9 compounds (0 x 0.6) had been prepared by the modified sol-gel method and characterized by powder X-ray diffraction, thermo-gravimetric analysis, four-probe resistivity, and Vickers's hardness studies. The gels from co-precipitation were treated with heated 1-octanol. All of the samples showed fluoride structure after calcined at 600 °C. Sintering the powders of Y0.2Ce0.8O1.9 and Y0.2Zr0.6Ce0.2O1.9 at 1300 °C gave the relative density of 95.8% and 99%, respectively. 99% relative density could be obtained for all samples after sintering at 1500 °C. This study showed a much more improved result than that of the previous reports. The hardness was 13.7 GPa for the Y0.2Zr0.6Ce0.2O1.9 pellet, which was twice greater than that for Y0.2Ce0.8O1.9 (7.1 GPa). Therefore, the mechanical properties could be improved by the addition of ZrO2 to Y0.2ZrxCe0.8−xO1.9. At 800 °C, the electrical conductivity of Y0.2Ce0.8O1.9 and Y0.2Zr0.6Ce0.2O1.9 were 3.3 × 10−2 S/cm and 5.5 × 10−3 S/cm, respectively. The conductivity was decreased by the addition of ZrO2 to Y0.2Ce0.8O1.9. It showed that the conductivity and hardness of Y0.2Zr0.2Ce0.6O1.9 were 1.2 × 10−2 S/cm and 9.6 GPa, respectively, at 800 °C and could be a better electrolyte candidate for “intermediate-temperature” unitized regenerative solid oxide fuel cells.
机译:通过改进的溶胶-凝胶法制备了一系列Y0.2ZrxCe0.8-xO1.9化合物(0 x 0.6),并通过粉末X射线衍射,热重分析,四探针电阻率和维氏硬度进行了表征学习。共沉淀的凝胶用加热的1-辛醇处理。在600℃下煅烧后,所有样品均显示出氟化物结构。在1300℃下烧结Y0.2Ce0.8O1.9和Y0.2Zr0.6Ce0.2O1.9粉末,相对密度分别为95.8%和99%。在1500°C烧结后,所有样品均可获得99%的相对密度。这项研究显示出比以前的报告要好得多的结果。 Y0.2Zr0.6Ce0.2O1.9颗粒的硬度为13.7 GPa,是Y0.2Ce0.8O1.9(7.1 GPa)的两倍。因此,可以通过在Y0.2ZrxCe0.8-xO1.9中添加ZrO2来改善机械性能。在800°C下,Y0.2Ce0.8O1.9和Y0.2Zr0.6Ce0.2O1.9的电导率分别为3.3×10-2 S / cm和5.5×10-3 S / cm。通过在Y0.2Ce0.8O1.9中添加ZrO2降低电导率。结果表明,Y0.2Zr0.2Ce0.6O1.9的电导率和硬度在800°C时分别为1.2×10-2 S / cm和9.6 GPa,并且可能是“中温”单元化的较好电解质再生固体氧化物燃料电池。

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