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首页> 外文期刊>Journal of the European Ceramic Society >Sol-gel synthesis and phase composition of ultrafine ceria-doped zirconia powders for functional ceramics
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Sol-gel synthesis and phase composition of ultrafine ceria-doped zirconia powders for functional ceramics

机译:功能陶瓷用二氧化铈掺杂氧化锆超细粉的溶胶-凝胶合成及相组成

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摘要

Ultrafine ceria-doped zirconia powders with the general formula Ce_÷Zr_(1-÷)O_2 oriented for functional ceramic materials for different purposes were prepared by modified sol-gel synthesis with use of monoethanolamine or tetraethylammonium hydroxide. All powders were high crystallized single-phase systems with average crystallite size 8-11 nm. It was established that doping of zirconia by ceria led to a decrease in the crystallite size. At the same time the nature of the zirconium salt anion has little effect on crystallite size. However, only powders obtained from zirconyl chloride had crystallites with sizes below 10 nm. When x = 0.150-0.155, a sharp increase in the crystallite size was observed regardless of the used organic components. Use of tetraethylammonium hydroxide resulted in formation of Ce_÷Zr_(1-÷)O_2 crystallites of 2-3 nm smaller than that which was obtained in the presence of monoethanolamine.
机译:通过使用单乙醇胺或氢氧化四乙铵进行改进的溶胶-凝胶合成,制备了用于不同目的的功能陶瓷材料的,具有通用型Ce_÷Zr_(1-÷)O_2的氧化铈掺杂的氧化锆细粉。所有粉末均为高结晶的单相体系,平均微晶尺寸为8-11 nm。已经确定,二氧化铈对氧化锆的掺杂导致微晶尺寸的减小。同时,锆盐阴离子的性质对微晶尺寸几乎没有影响。然而,仅从氧化锆氯化物获得的粉末具有尺寸小于10nm的微晶。当x = 0.150-0.155时,观察到微晶尺寸的急剧增加,而与所使用的有机成分无关。氢氧化四乙铵的使用导致形成比在单乙醇胺存在下获得的Ce_Zr_(1-÷)O_2微晶小2-3nm。

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