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对五氧化二钽基态结构和相稳定性的研究。

A search for the ground state structure and the phase stability of tantalum pentoxide.

作者信息

Pérez-Walton S, Valencia-Balvín C, Padilha A C M, Dalpian G M, Osorio-Guillén J M

机构信息

Facultad de Ingeniería, Instituto Tecnológico Metropolitano ITM, Calle 73 No 76A-354 Vía al Volador, Medellín, Colombia.

出版信息

J Phys Condens Matter. 2016 Jan 27;28(3):035801. doi: 10.1088/0953-8984/28/3/035801. Epub 2015 Dec 24.

Abstract

Tantalum pentoxide (Ta2O5) is a wide-gap semiconductor that presents good catalytic and dielectric properties, conferring to this compound promising prospective use in a variety of technological applications. However, there is a lack of understanding regarding the relations among its crystalline phases, as some of them are not even completely characterized and there is currently no agreement about which models better explain the crystallographic data. Additionally, its phase diagram is unknown. In this work we performed first-principles density functional theory calculations to study the structural properties of the different phases and models of Ta2O5, the equation of state and the zone-centered vibrational frequencies. From our results, we conclude that the phases that are built up from only distorted octahedra instead of combinations with pentagonal and/or hexagonal bipyramids are energetically more favorable and dynamically stable. More importantly, this study establishes that, given the pressure range considered, the B-phase is the most favorable structure and there is no a crystallographic phase transition to another phase at high-pressure. Additionally, for the equilibrium volume of the B-phase and the λ-model, the description of the electronic structure and optical properties were performed using semi-local and hybrid functionals.

摘要

五氧化二钽(Ta₂O₅)是一种宽带隙半导体,具有良好的催化和介电性能,这使得该化合物在各种技术应用中具有广阔的应用前景。然而,人们对其晶相之间的关系缺乏了解,因为其中一些晶相甚至尚未得到完全表征,而且目前对于哪种模型能更好地解释晶体学数据也没有达成共识。此外,其相图尚不清楚。在这项工作中,我们进行了第一性原理密度泛函理论计算,以研究Ta₂O₅不同相和模型的结构性质、状态方程以及布里渊区中心振动频率。根据我们的结果,我们得出结论,仅由扭曲八面体而非与五角和/或六角双锥组合构成的相在能量上更有利且动态稳定。更重要的是,这项研究表明,在所考虑的压力范围内,B相是最有利的结构,并且在高压下不存在向另一晶相的晶体学相变。此外,对于B相和λ模型的平衡体积,使用半局域和杂化泛函对电子结构和光学性质进行了描述。

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