Anomalous one-dimensional quantum confinement effect in graphene nanowrinkle
- Abstract
- "A theoretical principle for explaining the peculiarity in edge-free wrinkled graphene has not been firmly established. Herein, we perform DFT calculations to verify the graphene nanowrinkle (GNW) feature on metal as a model system based on experimental observation. We unveil that the interfacial interaction between the graphene and the substrate plays a crucial role in leading to quantum confinement. The longitudinal direction and the effective confined length were investigated as key parameters to control the electronic structure of graphene by corrugation engineering. A series of standing waves corresponding to the particle in a box model was also confirmed by the charge densities of GNW. ?2023 American Physical Society.
- Author(s)
- Ahn, Jong-Guk; Kim, Jee Hyeon; Lee, Minhui; Kim, Yousoo; Jung, Jaehoon; Lim, Hyunseob
- Issued Date
- 2023-07
- Type
- Article
- DOI
- 10.1103/PhysRevB.108.045412
- URI
- https://scholar.gist.ac.kr/handle/local/10098
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