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Preparation of nanosized barium zirconate powder by thermal decomposition of urea in an aqueous solution containing barium and zirconium, and by calcination of the precipitate

机译:通过尿素在含钡和锆的水溶液中的热分解以及沉淀物的煅烧制备纳米级锆酸钡粉末

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摘要

The synthesis of barium zirconate was initiated by urea induced homogeneous precipitation followed by a "low temperature" thermal treatment. The kinetic of the reaction and the optimum urea/cation ratio have been determined by means of X-ray diffraction and Inductive Coupled Plasma analyses. It has been demonstrated that an amorphous zirconium hydrated oxide starts to precipitate followed by the precipitation of barium carbonate. A calcination at 1200 degreesC during 2 h gives rise to the formation of a pure barium zirconate phase. Microstructural characterisations have been performed in order to evaluate the sintering behaviour. Dilatometric measurements, coupled with scanning electron microscopy analyses clearly indicate that barium carbonate decomposition process leads to the formation of internal porosity which severely limits the density of the material, even if a sintering was performed at 1500 degreesC. A careful control of the heating profile seems to be necessary in order to produce dense materials. (C) 2003 Elsevier Ltd. All rights reserved.
机译:锆酸钡的合成是通过尿素诱导的均匀沉淀,然后进行“低温”热处理而开始的。反应的动力学和最佳的尿素/阳离子比率已通过X射线衍射和电感耦合等离子体分析法确定。已经证明无定形水合锆氧化物开始沉淀,然后沉淀碳酸钡。在2小时内于1200摄氏度下煅烧会形成纯锆酸钡相。为了评估烧结性能,已经进行了微结构表征。膨胀测量法,结合扫描电子显微镜分析清楚地表明,碳酸钡分解过程导致内部孔隙的形成,这严重限制了材料的密度,即使在1500摄氏度下进行了烧结。为了生产致密材料,似乎必须仔细控制加热曲线。 (C)2003 Elsevier Ltd.保留所有权利。

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