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Analysis and application of the theories that rationalize the crystalline structures of fluorite-related rare earth oxides

机译:萤石相关稀土氧化物晶体结构合理化理论的分析和应用

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摘要

The main current theories dealing with the crystalline structures of the fluorite related rare earth oxides, including those corresponding to reduced oxides, one based on the distribution of the coordination defect inside the fluorite structure, and the other which proposes the establishment of modular sequences constituted by modules with fluorite structure, are presented and comparatively explored in detail. Our in-depth analysis of both approximations indicates that they in fact provide smart and efficient rationalizations of the currently known intermediate rare earth oxides structures. We prove however that the strict application of the principles and rules proposed by each theory does not yield unique and unambiguous results for most of the members of the homologous series, as it has been claimed up to now. Moreover, the controversy about the reliability of these two, apparently different and competing, theories is definitely clarified and the exact equivalence of their structural predictions is demonstrated. Finally, we propose new extra systematization rules, not considered up to now in neither of these theoretical approaches, to overcome the observed limitations to properly rationalize the structure of this so technologically important family of oxides.
机译:当前主要的萤石理论涉及萤石相关的稀土氧化物的晶体结构,包括与还原的氧化物相对应的晶体结构,一种理论是基于萤石结构内部配位缺陷的分布,另一种理论是建立由介绍并比较详细地探讨了具有萤石结构的组件。我们对这两种近似值的深入分析表明,它们实际上为当前已知的中间稀土氧化物结构提供了有效的智能化方法。但是,我们证明,严格遵循每种理论提出的原理和规则,对于大多数同源序列的成员而言,不会产生独特而明确的结果,正如迄今为止所宣称的那样。而且,关于这两种看似不同且相互竞争的理论的可靠性的争议得到了明确澄清,并证明了它们的结构预测的确切等效性。最后,我们提出了新的系统化规则,这些理论方法都没有考虑到这些新的系统化规则,以克服观察到的局限性,以合理地合理化这种具有重要技术意义的氧化物族的结构。

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