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镍吸附原子在有空位的石墨烯上迁移的第一性原理研究

First-principles study of Ni adatom migration on graphene with vacancies.

作者信息

Hernández-Vázquez E E, Munoz F, López-Moreno S, Morán-López J L

机构信息

División de Materiales Avanzados, IPICYT Camino a la Presa San José 2055 San Luis Potosí S.L.P. 78216 Mexico.

Departamento de Física, Facultad de Ciencias, Universidad de Chile Santiago Chile.

出版信息

RSC Adv. 2019 Jun 14;9(33):18823-18834. doi: 10.1039/c9ra00999j.

Abstract

A theoretical study based on first-principles calculations about the interaction and diffusion of Ni atoms on pristine graphene and graphene with a single vacancy is presented. In the first case, we explored the structural changes due to the adsorption of Ni on graphene and the effects on the electronic structure. In the case of graphene with a vacancy, we analyzed the impact of the adsorbed Ni atom on the distortion of the graphene structure and how it depends on the distance from the graphene defect. In the analysis, we observed the changes in the electron localization function and the charge density. By knowing the interaction map of Ni with graphene, and the structural changes of the network, we performed energy barrier calculations within the climbing image nudged elastic band methodology to study the nickel diffusion. Finally, we explored how the vacancy and structural distortions affect the minimum energy paths and the saddle points for nickel moving away, around, and towards the vacancy.

摘要

本文基于第一性原理计算,对镍原子在原始石墨烯和具有单个空位的石墨烯上的相互作用及扩散进行了理论研究。在第一种情况下,我们探究了镍吸附在石墨烯上引起的结构变化及其对电子结构的影响。对于有空位的石墨烯,我们分析了吸附的镍原子对石墨烯结构畸变的影响以及这种影响如何依赖于与石墨烯缺陷的距离。在分析过程中,我们观察了电子局域函数和电荷密度的变化。通过了解镍与石墨烯的相互作用图以及网络的结构变化,我们采用爬山图像推挤弹性带方法进行了能垒计算,以研究镍的扩散。最后,我们探究了空位和结构畸变如何影响镍远离、绕着以及朝向空位移动的最小能量路径和鞍点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12c4/9065389/19e6dd42ee7d/c9ra00999j-f1.jpg

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