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Ab-initio Study of Hydrogen Permeation though Palladium Membrane

机译:钯膜透氢的从头算研究

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Hydrogen permeation through dense palladium-based membranes has attracted the attention of many scientists largely due to their unmatched potential as hydrogen-selective membranes for membrane reactor applications. Although it is well known that the permeation mechanism of hydrogen through Pd involves various processes such as dissociative adsorption, transitions to and from the bulk Pd, diffusion within Pd, and recombinative desorption, it is still unclear which process mainly limits hydrogen permeation at a given temperature and hydrogen partial pressure. In this study, we report an all-electron density-functional theory study of hydrogen permeation through Pd membrane (using VASP code). Especially, we focus on the variation of the energy barrier of the penetration process from the surface to the bulk with hydrogen coverage, which means the large reduction of the fracture stress in the brittle crack propagation considering Griffith's criterion. It is also found that the penetration energy barrier from the surface to the bulk largely decreases so that it almost vanishes at the coverage 1.25, which means that the penetration process cannot be the rate determining process.
机译:通过致密钯基膜的氢渗透吸引了许多科学家的注意力,这主要是因为它们作为膜反应器应用中的氢选择性膜具有无与伦比的潜力。尽管众所周知氢通过Pd的渗透机制涉及各种过程,例如解离吸附,与大块Pd之间的过渡,Pd内的扩散以及复合脱附,但仍不清楚哪个过程主要限制给定氢的渗透温度和氢分压。在这项研究中,我们报告了氢通过Pd膜渗透的全电子密度泛函理论研究(使用VASP代码)。特别是,我们着重研究了从氢到氢的渗透过程中,从表面到整个表面的能垒的变化,这意味着考虑到格里菲斯准则,脆性裂纹扩展中的断裂应力将大大降低。还发现,从表面到主体的渗透能垒大大降低,因此在覆盖率1.25处几乎消失,这意味着渗透过程不能成为速率确定过程。

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