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First principles studies on the impact of point defects on the phase stability of (AlxCr1?x)2O3 solid solutions

机译:点缺陷对(AlxCr1?x)2O3固溶体相稳定性影响的第一性原理研究

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Density Functional Theory applying the generalised gradient approximation is used to study the phase stability of (AlxCr1?x)2O3solid solutions in the context of physical vapour deposition (PVD). Our results show that the energy of formation for the hexagonal α phase is lower than for the metastable cubic γ and B1-like phases–independent of the Al content x. Even though this suggests higher stability of the α phase, its synthesis by physical vapour deposition is difficult for temperatures below 800 °C. Aluminium oxide and Al-rich oxides typically exhibit a multi-phased, cubic-dominated structure. Using a model system of (Al0.69Cr0.31)2O3 which experimentally yields larger fractions of the desired hexagonal α phase, we show that point defects strongly influence the energetic relationships. Since defects and in particular point defects, are unavoidably present in PVD coatings, they are important factors and can strongly influence the stability regions. We explicitly show that defects with low formation energies (e.g. metal Frenkel pairs) are strongly preferred in the cubic phases, hence a reasonable factor contributing to the observed thermodynamically anomalous phase composition.
机译:应用广义梯度近似的密度泛函理论研究了在物理气相沉积(PVD)背景下(AlxCr1?x)2O3固溶体的相稳定性。我们的结果表明,与Al含量x无关,六角形α相的形成能比亚稳立方γ相和B1类相的形成能低。即使这表明α相具有更高的稳定性,但对于低于800°C的温度,通过物理气相沉积法合成α相仍然很困难。氧化铝和富铝氧化物通常表现出多相,立方晶为主的结构。使用(Al0.69Cr0.31)2O3的模型系统,该系统通过实验产生较大比例的所需六角形α相,我们证明了点缺陷对能量关系的影响很大。由于PVD涂层中不可避免地会出现缺陷,尤其是点缺陷,因此它们是重要因素,会严重影响稳定性区域。我们明确表明,在立方相中强烈优选具有低形成能的缺陷(例如金属Frenkel对),因此有助于观察到的热力学异常相组成的合理因素。

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