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First-principles study of the thermodynamics of hydrogen-vacancy interaction in fcc iron

机译:催化裂化铁中氢空位相互作用热力学的第一性原理研究

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摘要

The interaction of vacancies and hydrogen in an fcc iron bulk crystal was studied combining thermodynamic concepts with ab initio calculations and considering various magnetic structures. We show that up to six H atoms can be trapped by a monovacancy. All of the studied point defects (single vacancy, H in interstitial positions, and H-vacancy complexes) cause an anisotropic elastic field in antiferromagnetic fcc iron and significantly change the local and total magnetization of the system. The proposed thermodynamical model allows the determination of the equilibrium vacancy concentration and the concentration of dissolved hydrogen for a given temperature and H chemical potential in the reservoir. For H-rich conditions a dramatic increase in the vacancy concentration in the crystal is found.
机译:结合热力学概念和从头算,并考虑各种磁性结构,研究了fcc铁块体晶体中空位与氢的相互作用。我们表明,一个空位最多可以俘获六个H原子。所有已研究的点缺陷(单个空位,间隙位置的H和H空位络合物)都会在反铁磁FCC铁中引起各向异性弹性场,并显着改变系统的局部和总磁化强度。所提出的热力学模型可以确定储层中给定温度和H化学势的平衡空位浓度和溶解氢的浓度。对于富氢条件,发现晶体中的空位浓度急剧增加。

著录项

  • 来源
    《Physical review》 |2010年第22期|p.62-72|共11页
  • 作者单位

    Max-Planck Institut fuer Eisenforschung GmbH, D-40237 Duesseldorf, Germany;

    Max-Planck Institut fuer Eisenforschung GmbH, D-40237 Duesseldorf, Germany;

    Max-Planck Institut fuer Eisenforschung GmbH, D-40237 Duesseldorf, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    thermodynamics;

    机译:热力学;

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