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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Tritium Diffusion Pathways in gamma-LiAlO2 Pellets Used in TPBAR: A First-Principles Density Functional Theory Investigation
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Tritium Diffusion Pathways in gamma-LiAlO2 Pellets Used in TPBAR: A First-Principles Density Functional Theory Investigation

机译:TPBAR中使用的γ-LiAlo2颗粒中的氚扩散途径:第一原理密度泛函理论调查

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摘要

With superior thermophysical and thermochemical properties, gamma-LiAlO2 has high compatibility with other blanket materials and is used in the form of an annular pellet in tritium-producing burnable absorber rods (TPBARs) to produce tritium by thermal neutron irradiation of Li-6. In radiation damaged gamma-LiAlO2, different types of vacancies, defects of its constituent elements, and other trapping sites hinder the diffusion process of tritium. In this study, the first-principles density functional theory approach is used to study the diffusion mechanisms of tritium defect and its species, such as interstitial and substitutional tritium defects, oxygen-tritium vacancy defects, and interaction of tritium with oxygen vacancies in defective and nondefective gamma-LiAlO2. The obtained results provide an understanding of how such defects hamper the diffusivity and solubility of tritium. By calculating several different diffusion pathways, our results show that the smallest activation energy barrier is 0.63 eV for substitutional tritium diffusion with a diffusion coefficient of 3.25 X 10(-12) m(2)/s. The smallest oxygen-tritium diffusion barrier is found to be 2.17 eV, which is around 3.5 times higher than the tritium diffusion barrier alone.
机译:具有卓越的热物理和热化学性质,γ-Lialo2与其他橡皮料材料具有高相容性,并且以氚产生的氚颗粒的形式使用,以产生氚的可燃棒(TPBAR),以通过Li-6的热中子辐射产生氚。在辐射损坏的γ-lialo2,不同类型的空位,其组成元素的缺陷,以及其他捕获点阻碍了氚的扩散过程。在这项研究中,使用第一原理函数理论方法研究氚缺损的扩散机制及其物种,如间质和替代氚缺陷,氧气 - 氚空间缺陷,以及氚空位的缺陷缺陷和缺陷的相互作用NondFectiveGiveGama-Lialo2。获得的结果提供了理解这种缺陷如何阻碍氚的扩散和溶解度。通过计算几种不同的扩散途径,我们的结果表明,对于替代氚扩散,最小的激活能量屏障是0.63eV,其扩散系数为3.25×10(-12)m(2)/ s。最小的氧气扩散屏障被发现为2.17eV,其单独的氚扩散屏障高约3.5倍。

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