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首页> 外文期刊>Journal of Materials Science >Combustion synthesis, powder characteristics and crystal structure of phases in Ce-Pr-O system
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Combustion synthesis, powder characteristics and crystal structure of phases in Ce-Pr-O system

机译:Ce-Pr-O体系的燃烧合成,粉末特性和相的晶体结构

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摘要

The combustion method has been employed to produce homogeneous, single phased mixed rare-earth oxides in Ce1 - xPrxO2 - y system for x ranging from 0 to 0.7. A cubic fluorite structure is formed for the compositions 0 less than or equal to x less than or equal to 0.7, while for x > 0.7 mixed phases are obtained. The mixed oxides are formed at the furnace temperature of 500 degrees C in a short duration of 10 min. In view of the importance of these powders in catalysis, crystallite size, surface area and porosity measurements have been carried out. The crystallite size of the powders increases with x while the surface area decreases. As the temperature is increased to 850 degrees C, the surface area decreases and the effect is much pronounced in cerium rich oxides. The powders on calcination above 900 degrees C in air results in the demixing of Ce and Pr to give two fluorite phases. (C) 1998 Kluwer Academic Publishers. [References: 32]
机译:已经使用燃烧方法在Ce1-xPrxO2-y系统中生产x范围为0至0.7的均质,单相混合稀土氧化物。对于组成0小于或等于x小于或等于0.7,形成立方萤石结构,而对于x> 0.7则获得混合相。混合氧化物在10分钟的短时间内在500摄氏度的炉温下形成。考虑到这些粉末在催化中的重要性,已经进行了微晶尺寸,表面积和孔隙率测量。粉末的微晶尺寸随着x增加而表面积减小。随着温度升高到850摄氏度,表面积减小,并且在富铈氧化物中效果非常明显。在空气中高于900摄氏度煅烧时,粉末会导致Ce和Pr分解,产生两个萤石相。 (C)1998 Kluwer学术出版社。 [参考:32]

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