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DFT study of nitrogen-vacancy complexions in (fcc) Fe

机译:DFT研究(fcc)铁中的氮空位肤色

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Formation energies of nitrogen (N)/vacancy (v) monomers, N-N and N-v dimers and N-v complexions in an ideal face-centered cubic (fcc) lattice of iron are obtained via DFT calculations. Based on a thermodynamic model, the occupancies of various complexions and the vacancy concentration as a function of the chemical potential of N and temperature T are predicted. We found that increasing the chemical potential or content of N can increase the vacancy concentration considerably, e.g. compared with the case without nitrogen, increasing the N content to 10 at% at 750K can increase the vacancy concentration by about eight orders of magnitude when a saturated concentration is reached.
机译:通过DFT计算获得了理想的面心立方(fcc)铁中的氮(N)/空位(v)单体,N-N和N-v二聚体以及N-v络合物的形成能。基于热力学模型,预测了各种肤色的占有率和空缺浓度随N和T的化学势的变化。我们发现增加化学势或氮含量可以显着增加空位浓度,例如。与没有氮的情况相比,当达到饱和浓度时,在750K下将N含量增加到10 at%可以使空位浓度增加约8个数量级。

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