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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >First-principles calculations for point defects in MAX phases Ti2AlN
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First-principles calculations for point defects in MAX phases Ti2AlN

机译:MAX相Ti2AlN中点缺陷的第一性原理计算

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This paper outlines general physical issues associated with performing computational numerical simulations of primary point defects in MAX phases Ti2AlN. First-principles solutions are possible due to the development of computational resources of software and hardware. The calculation accuracy is a good agreement with the experimental results. As an important application of our simulations, the results could provide a theoretical guidance for future experiments and application of Ti2AlN. For example, the N mono-vacancy is the most difficult to form. On the contrary, the mono-vacancy formation in Ti2AlN is energetically most favorable for the Al atom. The essence of the phenomena is explained by the calculated density of state (DOS).
机译:本文概述了与在MAX相Ti2AlN中进行基点缺陷的计算数值模拟有关的一般物理问题。由于软件和硬件的计算资源的发展,第一原理的解决方案是可能的。计算精度与实验结果吻合良好。作为我们模拟的重要应用,结果可为将来的实验和Ti2AlN的应用提供理论指导。例如,N单空位是最难形成的。相反,Ti 2 AlN中的单空位形成在能量上最有利于Al原子。现象的本质由计算得出的状态密度(DOS)解释。

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