Embedded atoms in a crystalline hexagonal structure

Z. Matysina, A. Zolotarenko, O. Zolotarenko, T. Myronenko, D. V. Schur, E. Rudakova, M. Chymbai, A. Zolotarenko, I. Zagorulko, O. Havryliuk
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引用次数: 1

Abstract

As part of the work, the hexagonal structure of B19 type metals as hydrogen sorbents will be considered. That is, crystal lattices are considered, where atoms of impurities (hydrogen) are introduced into the interstices of the metal. To do this, we present an image of the B19 structure itself. In this work, the solubility of hydrogen in the crystal structure of B19 type metals was studied using the configuration method, and the dependence on the composition of the alloy and temperature was found in the substitution of nodes and interstices. Also, in the work the degrees of long-range order at the nodes are considered and the parameters of the correlation in the substitution are determined. A graphical view of the effect of atomic order on the solubility of impurities is given. The calculated data obtained in the work coincide with the experimental data of other studies, and the obtained calculation formulas make it possible to determine the energy parameters of the alloys, which is a certain scientific value of the work. The proposed system takes into account only atomic interaction and absorption (dissolution) and diffusion of interstitial atoms into the bulk of the crystal structure; therefore, it is possible to predict the introduction of only a hydrogen atom. Thus, the results obtained in the work of the correlation parameters for the distribution of atoms only in octapores or only in tetrapores allow a deeper study of the physical characteristics of alloys of the B19 type and an understanding of the processes of hydrogen sorption by the working bodies of hydrogen storage.
晶体六边形结构中的嵌入原子
作为工作的一部分,将考虑 B19 型金属的六边形结构作为氢吸附剂。也就是说,在考虑晶格时,要将杂质(氢)原子引入金属间隙。为此,我们将展示 B19 结构本身的图像。在这项工作中,我们使用构型法研究了氢在 B19 型金属晶体结构中的溶解度,并发现了节点和间隙的置换与合金成分和温度的关系。此外,该研究还考虑了节点处的长程有序度,并确定了置换中的相关参数。给出了原子序对杂质溶解度影响的图表。工作中获得的计算数据与其他研究的实验数据相吻合,获得的计算公式使得确定合金的能量参数成为可能,这是该工作的一定科学价值所在。所提出的系统只考虑了原子的相互作用和吸收(溶解)以及间隙原子向晶体结构主体的扩散;因此,可以预测只引入一个氢原子的情况。因此,工作中获得的仅在八孔隙或仅在四孔隙中原子分布的相关参数结果,可以更深入地研究 B19 型合金的物理特性,并了解储氢工作体的吸氢过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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