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The size dependence of structural stability in nano-sized ZrO_2 particles

机译:纳米ZrO_2颗粒的结构稳定性与尺寸的关系

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摘要

The stable or metastable phase was found to be dependent on the size of ZrO_2 nano particles. Amorphous hydrated ZrO_2 powders prepared by precipitation were annealed at 1300℃ and maintained for different length of time followed by being quenched in ambient. The average particle size and phases were determined by X-ray diffraction cross-checked by transmission electron microscopy. The powders were found composed of monoclinic (m) phase when the particle size (d) is larger than 31 nm, whereas tetragonal (t) phase remains stable at room temperature when particle size is less than 14 nm. The mixture of the t and m phases is observed when average particle size locates between 14 and 31 nm. Thermodynamic calculation indicates that the surface free energy difference between tetragonal and monoclinic phases surpasses the volume chemical free energy difference between two phases at room temperature when the particle size of zirconia decreases below 13 nm. The lower surface energy of tetragonal phase results in the stability of tetragonal structure at room temperature, while tetragonal phase is normally stable at high temperature for coarse ceramics. The experimental results are in good agreement with theoretical prediction.
机译:发现稳定相或亚稳态相取决于ZrO_2纳米颗粒的尺寸。通过沉淀制备的非晶态水合ZrO_2粉末在1300℃退火,并保持不同的时间长度,然后在环境中淬火。通过透射电子显微镜交叉检查的X射线衍射测定平均粒径和相。当粒径(d)大于31nm时,发现粉末由单斜晶(m)相组成,而当粒径小于14nm时,四方(t)相在室温下保持稳定。当平均粒径位于14和31 nm之间时,观察到t和m相的混合物。热力学计算表明,当氧化锆的粒径减小到13 nm以下时,在室温下,四方相和单斜相之间的表面自由能差超过了两相之间的体积化学自由能差。四方相的较低表面能导致在室温下四方结构的稳定性,而对于粗陶瓷,四方相通常在高温下稳定。实验结果与理论预测吻合良好。

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