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用于铁中氧缺陷模拟的解析原子间键序势

Analytical interatomic bond-order potential for simulations of oxygen defects in iron.

作者信息

Byggmästar J, Nagel M, Albe K, Henriksson K O E, Nordlund K

机构信息

Department of Physics, University of Helsinki, PO Box 43, FI-00014 Helsinki, Finland.

出版信息

J Phys Condens Matter. 2019 May 29;31(21):215401. doi: 10.1088/1361-648X/ab0931. Epub 2019 Feb 21.

Abstract

We present an analytical bond-order potential for the Fe-O system, capable of reproducing the basic properties of wüstite as well as the energetics of oxygen impurities in [Formula: see text]-iron. The potential predicts binding energies of various small oxygen-vacancy clusters in [Formula: see text]-iron in good agreement with density functional theory results, and is therefore suitable for simulations of oxygen-based defects in iron. We apply the potential in simulations of the stability and structure of Fe/FeO interfaces and FeO precipitates in iron, and observe that the shape of FeO precipitates can change due to formation of well-defined Fe/FeO interfaces. The interface with crystalline Fe also ensures that the precipitates never become fully amorphous, no matter how small they are.

摘要

我们提出了一种用于铁 - 氧体系的解析键序势,它能够再现方铁矿的基本性质以及氧杂质在α - 铁中的能量学。该势预测了α - 铁中各种小的氧空位团簇的结合能,与密度泛函理论结果吻合良好,因此适用于模拟铁中基于氧的缺陷。我们将该势应用于铁中Fe/FeO界面和FeO析出物的稳定性与结构模拟,并观察到由于形成明确的Fe/FeO界面,FeO析出物的形状会发生变化。与结晶态铁的界面还确保了析出物无论多小都不会完全变成非晶态。

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