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Mechanisms of nanostructural and morphological evolution of CeO_2 functional films by chemical solution

机译:化学溶液对CeO_2功能膜的纳米结构和形貌演化机理

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摘要

Tuning the interfacial area is essential for the optimization of nanostructured CeO_2 in a variety of applications. In this work, we investigate the microstructural mechanism of an oxidation-induced transition from a partially oriented, granular and porous nanostructure to a dense epitaxial one in CeO_2 films deposited from chemical solutions. Crystallization under reducing atmospheric conditions results in a nanometric granular microstructure with a high fraction of C decorating grain boundaries and interstitial cavities. Annealing in oxidizing conditions removes C impurities and promotes grain growth, resulting in a fully epitaxial film, as well as stabilizing the otherwise energetically prohibitive polar (001) planes. A mechanism that considers an impurity induced grain boundary blocking mechanism and the stabilization of (001) planes via surface oxidation is proposed.
机译:调整界面面积对于在各种应用中优化纳米结构CeO_2至关重要。在这项工作中,我们研究了由化学溶液沉积的CeO_2薄膜中氧化诱导的从部分取向的,颗粒状和多孔的纳米结构过渡到致密的外延结构的微观结构机理。在降低的大气条件下结晶导致纳米颗粒状的微观结构,其中大部分C修饰了晶界和空隙。在氧化条件下进行退火可去除C杂质并促进晶粒生长,从而形成完全外延的薄膜,并稳定原本在能量上禁止的极性(001)平面。提出了一种考虑杂质诱导的晶界阻挡机理和通过表面氧化稳定(001)平面的机理。

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