材料科学
氢
双层
扩散
杂质
化学物理
中子
动能
化学工程
热力学
化学
膜
核物理学
工程类
物理
有机化学
量子力学
生物化学
作者
Xiao Liu,Huaican Chen,Jianfei Tong,Wenhao He,Xujing Li,Tianjiao Liang,Yuhong Li,Wen Yin
出处
期刊:Nanomaterials
[Multidisciplinary Digital Publishing Institute]
日期:2019-08-02
卷期号:9 (8): 1107-1107
被引量:6
摘要
Hydrogen bubble phenomenon is one of the key issues to be solved in the development of a long-life target system for boron neutron capture therapy (BNCT). In this study, we assessed the kinetic behaviors of H impurities in the nano-composite target from the atomic level. Firstly, two kinds of Li/Ta nanolayer models were constructed, based on the calculated lattice parameters and surface energies. The H solution energy, diffusion mechanism, and hydrogen bubbles formation in the Li/Ta nanostructured bilayer were studied, through theoretical modeling and simulation. Our results show that the Li/Ta interfaces are effective sinks of H atoms because the H solution energies in the interface are lower. Meanwhile, due to the relatively low diffusion barriers, the large-scale H transport through the interface is possible. In addition, although it is more likely to form hydrogen bubbles in the Ta layer, compared with the Li layer, the anti-blistering ability of Ta is more impressive compared with most of other candidate materials. Therefore, the Ta layer is able to act as the hydrogen absorber in the Li/Ta bilayer, and relieve the hydrogen damage of the Li layer in the large-scale proton radiations.
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