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Ab initio inspired design of ternary boride thin films

机译:从头开始设计三元硼化物薄膜

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摘要

The demand to discover new materials is scientifically as well as industrially a continuously present topic, covering all different fields of application. The recent scientific work on thin film materials has shown, that especially for nitride-based protective coatings, computationally-driven understanding and modelling serves as a reliable trend-giver and can be used for target-oriented experiments. In this study, semi-automated density functional theory (DFT) calculations were used, to sweep across transition metal diborides in order to characterize their structure, phase stability and mechanical properties. We show that early transition metal diborides (TiB2, VB2, etc.) tend to be chemically more stable in the AlB2 structure type, whereas late transition metal diborides (WB2, ReB2, etc.) are preferably stabilized in the W2B5−x structure type. Closely related, we could prove that point defects such as vacancies significantly influence the phase stability and even can reverse the preference for the AlB2 or W2B5−x structure. Furthermore, investigations on the brittle-ductile behavior of the various diborides reveal, that the metastable structures are more ductile than their stable counterparts (WB2, TcB2, etc.). To design thin film materials, e.g. ternary or layered systems, this study is important for application oriented coating development to focus experimental studies on the most perspective systems.
机译:在科学上和工业上,发现新材料的需求一直是一个持续存在的主题,涉及所有不同的应用领域。最近有关薄膜材料的科学研究表明,特别是对于基于氮化物的保护涂层,计算驱动的理解和建模是可靠的趋势提供者,可用于面向目标的实验。在这项研究中,使用半自动密度泛函理论(DFT)计算来扫过过渡金属二硼化物,以表征其结构,相稳定性和机械性能。我们表明,早期过渡金属二硼化物(TiB2,VB2等)在化学上更趋于稳定于AlB2结构类型,而后期过渡金属二硼化物(WB2,ReB2等)优选在W2B5-x结构类型中稳定。密切相关,我们可以证明点缺陷(如空位)会显着影响相稳定性,甚至可以逆转对AlB2或W2B5-x结构的偏好。此外,对各种二硼化物的脆性-延性行为的研究表明,亚稳结构比其稳定的对应物(WB2,TcB2等)更具延展性。设计薄膜材料三元或分层系统,这项研究对于面向应用的涂料开发,以使实验研究集中于大多数透视系统非常重要。

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