Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5422300 | Surface Science | 2013 | 6 Pages |
Abstract
The atomic structures and electronic properties of antimony and bismuth intercalated graphene on SiC(0001) substrate were investigated using first-principles calculations. The results show that, at Bi and Sb coverages of 1Â ML, the Dirac cones were preserved. The Ï and Ï* bands of the graphene are barely split by extrinsic spin-orbit interaction from metal layers. At 2/3Â ML, the Bi and Sb metal layers form a honeycomb structure, and the Dirac cones remain intact. Furthermore, a notable band splitting at the M point contributed from metal layers was found at 1Â ML, whereas a similar splitting at the K point was found at 2/3Â ML. Finally, our results show that these two metal intercalations lead to n-type doping of graphene.
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Authors
Chia-Hsiu Hsu, Vidvuds Ozolins, Feng-Chuan Chuang,