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Gel-Combustion Synthesis of Nanocrystalline Cerium Oxide and Its Powder Characteristics

机译:纳米氧化铈的凝胶燃烧合成及其粉末特性

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Nanocrystalline ceria powders were prepared by using citrate gel combustion. The influence of the composition of the combustion mixture on the characteristics of the final product was investigated. Ceria powders obtained by calcining the combustion residue in air at 1073 K were characterized for their specific surface area (SSA), X-ray crystallite size (XCS), bulk density (BD), particle size distribution (PSD) and residual carbon. The dependence of these properties on the fuel to oxidant ratio (R) of the initial mixture was investigated. The microstructure of the calcined ceria powders prepared from a mixture with R = 0.25 was investigated by using high resolution transmission electron microscopy. All the calcined powders were pelletised and sintered at 1473, 1673 and 1873 K, and their sinterability was compared by measuring the density of the sintered pellets. A maximum sintered density of 98 % theoretical density could be achieved at a temperature as low as 1473 K for the first time for the powder prepared from a mixture with R = 0.75. The systematic dependence of the properties of these powders on the composition of the initial mixture is being reported for the first time. Powders obtained from a mixture with an R value 0.25 showed a linear increase in sintered densities with the sintering temperature. Other powders exhibited anomalous decrease in the sintered density at high temperature, probably due to irregular grain growth coarsening.
机译:通过使用柠檬酸盐凝胶燃烧来制备纳米晶态二氧化铈粉末。研究了燃烧混合物的组成对最终产品特性的影响。通过在1073 K的空气中煅烧燃烧残留物获得的二氧化铈粉末的比表面积(SSA),X射线微晶尺寸(XCS),堆积密度(BD),粒度分布(PSD)和残留碳的特征在于。研究了这些性质对初始混合物的燃料与氧化剂之比(R)的依赖性。使用高分辨率透射电子显微镜研究了由R = 0.25的混合物制备的煅烧二氧化铈粉末的微观结构。将所有煅烧的粉末造粒并在1473、1673和1873 K下烧结,并通过测量烧结的粒料的密度比较其可烧结性。由R = 0.75的混合物制备的粉末首次在低至1473 K的温度下可获得98%理论密度的最大烧结密度。首次报道了这些粉末的性能对初始混合物组成的系统依赖性。由R值为0.25的混合物获得的粉末显示出烧结密度随烧结温度线性增加。其他粉末在高温下烧结密度异常降低,这可能是由于不规则的晶粒长大而造成的。

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