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首页> 外文期刊>The journal of physics and chemistry of solids >Enhancing the phase stability and ionic conductivity of scandia stabilized zirconia by rare earth co-doping
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Enhancing the phase stability and ionic conductivity of scandia stabilized zirconia by rare earth co-doping

机译:稀土共掺杂增强scan稳定氧化锆的相稳定性和离子电导率

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摘要

Effect of co-doping Yb, Gd and Ce in scandia stabilized zirconia (SSZ) on the phase stability, high temperature aging behavior and ionic conductivity was studied. Both binary (10 moI% SSZ) and the ternary (co-doped) compositions were found to be in single cubic phase in the as-processed condition. However, the binary composition exhibited the rhombohedral 'β' phase after sintering whereas the ternary compositions remained in the single cubic phase. The sintered pellets were aged at 900 °C for 500 h in air to study the phase stability at high temperature. Transmission electron microscopy revealed that the aged samples of Yb and Gd co-doped compositions contain small amount of the tetragonal phase which resulted in considerable degradation in conductivity (more than 20%). The Ce co-doped sample, on the other hand, was in single cubic phase after aging and this ensured that conductivity reduction was minimal in this composition. The co-doped samples however, showed higher conductivity before and after aging compared to the binary composition. The rhombohedral 'β' phase was absent in all the co-doped ternary compositions even after high temperature aging.
机译:研究了scan掺杂稳定氧化锆(SSZ)中Yb,Gd和Ce的共掺杂对相稳定性,高温老化行为和离子电导率的影响。发现二元(10mol%SSZ)和三元(共掺杂)组合物在加工条件下均处于单立方相。然而,二元组成在烧结后显示出菱形的“β”相,而三元组成保留在单立方相中。将烧结的球团在空气中于900°C老化500 h,以研究高温下的相稳定性。透射电子显微镜显示,Yb和Gd共掺杂的组合物的老化样品包含少量的四方相,这导致电导率显着降低(大于20%)。另一方面,Ce共掺杂的样品在老化后处于单立方相状态,这确保了该组合物中电导率的降低最小。然而,与二元组合物相比,共掺杂样品在老化之前和之后显示出更高的电导率。即使在高温老化之后,所有共掺杂的三元组合物中也没有菱面体的“β”相。

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