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H 和 He 杂质在 TiAlC 中的协同效应:第一性原理计算。

Synergetic effect of H and He impurities in TiAlC: first principles calculations.

机构信息

College of Physics and Electronic Engineering, Northwest Normal University, Lanzhou 730000, China.

出版信息

Phys Chem Chem Phys. 2018 Jul 11;20(27):18766-18774. doi: 10.1039/c8cp02082e.

Abstract

First principles calculations have been performed to investigate the synergetic effect of H and He impurities with vacancies in Ti3AlC2. The configurations and energetics of Hn-He-VAl complexes (n ≤ 4) and He-He/He-H/H-H interactions have been studied. It is found that the impurity H atom prefers to occupy the tetrahedral interstitial site (Itetr-3), but the He atom prefers to occupy the octahedral interstitial site (Ioct-4) in perfect Ti3AlC2. Within a pre-existing Al vacancy, the most favorable site for a He atom is close to tetr-site, meanwhile the H atom preferentially deviates from the vacancy center with the separation 1.3 Å along the 001 direction. He-H and He-He show a weakly attractive interaction, but weak repulsion occurs in the H-H interaction, which is different from the case of Ti3SiC2. The He-VAl complex plays an important role in the trapping of H atoms. The He-VAl cluster can trap up to three H atoms in the absence of H2 molecules, which leads to the formation of a H-He hybridized bubble. Thus, the He atom can subsequently suppress further aggregation of H atoms and block hydrogen embrittlement and volume swelling.

摘要

采用第一性原理计算研究了 H 和 He 杂质与 Ti3AlC2 空位的协同作用。研究了 Hn-He-VAl 复合物(n ≤ 4)和 He-He/He-H/H-H 相互作用的构型和能量。结果表明,杂质 H 原子优先占据四面体间隙位(Itetr-3),而 He 原子优先占据完美 Ti3AlC2 中的八面体间隙位(Ioct-4)。在预先存在的 Al 空位中,He 原子最有利的位置靠近四面体位,同时 H 原子优先偏离空位中心,沿 001 方向分离 1.3 Å。He-H 和 He-He 表现出弱的吸引力,但在 H-H 相互作用中会出现弱排斥,这与 Ti3SiC2 的情况不同。He-VAl 复合物在捕获 H 原子方面起着重要作用。在没有 H2 分子的情况下,He-VAl 团簇可以捕获多达三个 H 原子,从而形成 He-H 杂化泡。因此,He 原子随后可以抑制 H 原子的进一步聚集,并阻止氢脆和体积膨胀。

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