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Effect of MgO segregation and solubilization on the morphology of ZrO_2 powders during synthesis by the Pechini's method

机译:Pechini法合成过程中MgO的分离和增溶对ZrO_2粉末形貌的影响

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摘要

Studies carried out in several ceramic oxide systems have shown that segregation of ions during synthesis of ceramic materials by the Pechini's method has important morphology consequences for the powder: The aim of this paper is to establish the influence of the MgO segregation/solubilization on the morphology of ZrO_2 powders. The study was performed in powders prepared by chemical synthesis derived from the Pechini's method at 500 deg C for 15 h. It is observed that MgO concentrations up to the solubility limit promote ZrO_2 particle coarsening and a reduction of specific surface area by increasing the diffusion coefficient. However, MgO amounts higher than the solubility limit increase the specific surface area due to the segregation of Mg ions onto powder surfaces, and the decrease of surface energy MgO concentrations as high as 60 mol percent were used and specific surface areas about 120 m~2/g were achieved. However, only zirconia solid solution crystalline phase was observed, without MgO crystalline phases.
机译:在几种陶瓷氧化物体系中进行的研究表明,通过Pechini方法合成陶瓷材料过程中离子的偏析对粉末具有重要的形态学影响:本文的目的是确定MgO偏析/增溶对形态的影响ZrO_2粉末。这项研究是在500摄氏度下,采用由Pechini方法衍生的化学合成粉末制备的,历时15小时。观察到,达到溶解度极限的MgO浓度通过增加扩散系数而促进ZrO_2颗粒的粗化和比表面积的减小。但是,MgO的含量高于溶解度极限时,由于Mg离子在粉末表面的偏析而增加了比表面积,并且使MgO的表面能降低了60 mol%,比表面积约为120 m〜2 / g已实现。然而,仅观察到氧化锆固溶体结晶相,而没有MgO结晶相。

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