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首页> 外文期刊>Solid state ionics >Performance analysis of Na-beta ''-Al2O3/YSZ solid electrolytes produced by conventional sintering and by vapor conversion of alpha-Al2O3/YSZ
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Performance analysis of Na-beta ''-Al2O3/YSZ solid electrolytes produced by conventional sintering and by vapor conversion of alpha-Al2O3/YSZ

机译:常规烧结产生的NA-β''-AL2O3 / YSZ固体电解质的性能分析及α-AL2O3 / YSZ的蒸气转化

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摘要

High temperature Na2O vapor conversion of alpha-Al2O3 with different concentrations of yttria stabilized zirconia (YSZ) was used to produce Na-beta ''-Al2O3 solid electrolyte (BASE) materials. The influence of different ratios of yttria (YSZ-3 and YSZ-8) on conversion and material properties (ionic conductivity and flexural strength) was also investigated. Extent of conversion to Na-beta ''-Al2O3 was calculated by semi-quantitative XRD phase analysis. Al2O3 composites with 20% or less YSZ were incompletely converted to Na-beta ''-Al2O3 after 2 h at 1450 degrees C. Al2O3 composites with 30-40% YSZ-3 appear fully converted by XRD but have lower conductivity and higher strength compared to conventionally sintered Na-beta ''-Al(2)O(3 )composites with the same concentration of YSZ-3. SEM of the materials indicated differences in morphology and grain size. XRD of Al2O3 composites with YSZ-8 showed significantly lower conversion than those with YSZ-3. This is attributed to the larger grain size of YSZ-8, which limits the homogeneity of composites with Al2O3 and thus does not assist in oxygen diffusion as well as YSZ-3. Although the vapor converted BASE materials tended to have lower conductivities at 300 degrees C, they have lower activation energies (0.20 eV) compared to conventionally sintered Na-beta ''-Al2O3 composites (0.30 eV) and comparatively higher conductivity at ambient temperature. Vapor converted BASE materials also have better mechanical properties, which should allow fabrication of thinner electrodes.
机译:使用不同浓度的氧化钇稳定的氧化锆(YSZ)的高温Na 2 O 3α-Al2O3稳定化氧化锆(YSZ)产生Na-β'-Al2O3固体电解质(基础)材料。还研究了不同比率对转化和材料性质(离子电导率和弯曲强度)的影响。通过半定量XRD相分析计算转化为Na-Beta''-A12的程度。在1450摄氏度的2小时后,含有20%或更少的YSZ的Al2O3复合材料对Na-β''-al2O3不完全转化为Na-β'-al2O3。用30-40%YSZ-3的Al 2 O 3复合材料通过XRD完全转换,但相比具有较低的导电性和更高的强度对于具有相同浓度的YSZ-3的常规烧结Na-β'的“-Al(2)O(3)复合材料。材料的SEM表明了形态和晶粒尺寸的差异。使用YSZ-8的Al2O3复合材料的XRD显着降低转换比YSZ-3的转换显着降低。这归因于较大的YSZ-8的晶粒尺寸,这限制了与Al2O3的复合材料的均匀性,因此不辅助氧扩散以及YSZ-3。尽管蒸汽转化的基础材料在300摄氏度下具有较低的导电性,但是与常规烧结的Na-β''-al2O3复合材料(0.30eV)相比,它们具有较低的活化能量(0.20eV),并且在环境温度下相对较高的导电性。蒸汽转化的基础材料还具有更好的机械性能,这应该允许制造更薄的电极。

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