Atomic structure and formation mechanism of sub-nanometer pores in 2D monolayer MoS2.
We use electron-beam nanofabrication to create sub-nanometer (sub-nm) pores in 2D monolayer MoS2 with fine control over the pore size down to 0.6 nm, corresponding to the loss of a single Mo atom and surrounding S atoms. The sub-nm pores are created in situ with 1 nm spatial precision in the MoS2 la...
Autors principals: | Wang, S, Li, H, Sawada, H, Allen, C, Kirkland, A, Grossman, J, Warner, J |
---|---|
Format: | Journal article |
Idioma: | English |
Publicat: |
Royal Society of Chemistry
2017
|
Ítems similars
-
Atomic structure and dynamics of single platinum atom interactions with monolayer MoS2
per: Li, H, et al.
Publicat: (2017) -
Atomically flat zigzag edges in monolayer MoS2 by thermal annealing
per: Chen, Q, et al.
Publicat: (2017) -
Atomic structure and dynamics of self-limiting sub-nanometer pores in monolayer WS2
per: Ryu, G, et al.
Publicat: (2018) -
Atomic Structure and Dynamics of Self-Limiting Sub-Nanometer Pores in Monolayer WS 2
per: Ryu, Gyeong Hee, et al.
Publicat: (2021) -
Atomic Structure and Dynamics of Single Platinum Atom Interactions with Monolayer MoS
per: Wang, Shanshan, et al.
Publicat: (2018)