Ab initio study of magnetic properties in the adsorption of transition-metal atoms on arsenene
- Authors: Luo M.1, Shen Y.H.2, Yin T.L.3
-
Affiliations:
- Department of Electronic Engineering
- Key Laboratory of Polar Materials and Devices
- School of Electronics and Information
- Issue: Vol 104, No 8 (2016)
- Pages: 557-562
- Section: Condensed Matter
- URL: https://journals.rcsi.science/0021-3640/article/view/159611
- DOI: https://doi.org/10.1134/S0021364016200029
- ID: 159611
Cite item
Abstract
The magnetic properties of adsorption of different transition-metal (TM) atoms (Co, Cu, Mn, Fe, and Ni) on arsenene are investigated using density functional theory (DFT). Magnetism appears in the cases of Co, Mn, and Fe. Among all the magnetic cases, the TM atom prefers the same adsorption site. Then, we further study the interaction in two-TM-adsorbed system and different magnetic states are observed. Our results show that both nonmagnetic and ferromagnetic states exist in two-Co-adsorbed system and the p-d hybridization mechanism results in its ferromagnetic state. However, for two Mn and two Fe adsorbed systems, an AFM interaction is found, which could be reasonably explained by the superexchange mechanism. Such multiple magnetic properties may suggest promising applications of TM-adsorbed arsenene in the future.
About the authors
M. Luo
Department of Electronic Engineering
Author for correspondence.
Email: mluo@gench.edu.cn
China, Shanghai, 201306
Y. H. Shen
Key Laboratory of Polar Materials and Devices
Email: mluo@gench.edu.cn
China, Shanghai, 200241
T. L. Yin
School of Electronics and Information
Email: mluo@gench.edu.cn
China, Nantong, 226019
Supplementary files
