首页> 外文会议>International Conference on Advanced Ceramics and Composites >TEMPERATURE AND PREASSURE ASSISTED CUBIC TO RHOMBOHEDRAL PHASE TRANSITION IN Sc_(0.1)Ce_(0.01)ZrO_2 BY MICRO-RAMAN
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TEMPERATURE AND PREASSURE ASSISTED CUBIC TO RHOMBOHEDRAL PHASE TRANSITION IN Sc_(0.1)Ce_(0.01)ZrO_2 BY MICRO-RAMAN

机译:通过微拉曼的温度和压力辅助立方于SC_(0.1)CE_(0.01)ZrO2中的rhombohedral相变

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It was recently shown that the high temperature cubic Sc_(0.1)Ce_(0.01)ZrO_2 is metastable at room temperature and could be easily transformed to the thermodynamically stable rhombohedral phase upon annealing at 350°C-400°C after a certain period of time. Such transition, though not drastically important for operation of Intermediate Temperature Solid Oxide Fuel Cell, still might degrade the performance of Sc_(0.1)Ce_(0.01)ZrO_2 electrolyte upon thermal cycling. Therefore, the properties of the cubic and rhombohedral Sc_(0.1)Ce_(0.01)ZrO_2 phases have to be studied. Here, we report the vibration response of cubic and rhombohedral Sc_(0.1)Ce_(0.01)ZrO_2 studied both at room and high-temperatures. Stress and temperature-assisted phase transition from cubic to rhombohedral phase was detected during in-situ Raman spectroscopy experiments. The conditions which promote either the formation of rhombohedral phase or retention of cubic phase upon temperature or stress applications have been determined.
机译:最近表明,高温立方SC_(0.1)CE_(0.01)ZrO_2在室温下致氢,并且可以在一定时间内在350℃-400℃下退火时容易地转化为热力学稳定的菱形相。这种过渡,但对于中间温度固体氧化物燃料电池的操作并不急剧上,仍可能降低热循环时SC_(0.1)CE_(0.01)CE_(0.01)ZRO_2电解质的性能。因此,必须研究立方和菱形SC_(0.1)CE_(0.01)ZrO_2阶段的性质。在这里,我们报告了在室内和高温下研究的立方和菱形SC_(0.01)CE_(0.01)ZRO_2的振动响应。在原位拉曼光谱实验期间检测从立方体到菱形相的应力和温度辅助相转变。确定了促进rhomboheheheh中阶段的形成或在温度或胁迫应用时保持立方相的条件。

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