立方氧化锆
材料科学
单斜晶系
四方晶系
表面能
相图
粒度
焓
晶粒生长
矿物学
陶瓷
相(物质)
化学工程
热力学
结晶学
晶体结构
冶金
化学
复合材料
物理
工程类
有机化学
作者
Robson L. Grosso,E.N.S. Muccillo,Ricardo H. R. Castro
摘要
Abstract Scandia‐zirconia system has great technological interest as it has the highest ionic conductivity among doped zirconia ceramics. However, polymorphism is the most important limiting factor for application of this material. Considering that there is a strong grain size dependence on phase transitions in this class of materials, mapping out the stable polymorph as a function of grain size and composition may lead to more efficient compositional design. In this article, the phase stability of zirconia‐scandia nanocrystals was investigated based on experimental thermodynamic data. Exploiting recent advances in microcalorimetry, reliable surface energy data for five polymorphs of scandia‐zirconia system: monoclinic, tetragonal, cubic, rhombohedral β and γ are reported for the first time. Combining surface energy values with bulk enthalpy data obtained from oxide melt drop solution calorimetry allowed us to create a predictive phase stability diagram that shows the stable zirconia polymorph as a function of composition and grain size of the specimen within the range of 0‐20 mol% scandia.
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