Two-dimensional tetragonal TiC monolayer sheet and nanoribbons.
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Summary
The TiC sheet exhibits a novel zigzag-shaped buckling structure with all atoms being quasiplanar tetracoordinate, as favored by strong in-plane C2p-Ti3d bonding and synergetic out-of-plane electronic delocalization, thus promising for wide applications in nanoelectronics.
- Type
- article
- Published
- 2012-11-15
- Cited by
- 198
- References
- 36
- OpenAlex
- https://openalex.org/W23137029
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:1096625
Keywords
Humanities, Art
References
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Cited by
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- Two-dimensional silicon-carbon hybrids with a honeycomb lattice: New family for two-dimensional photovoltaic materials
- Hydrogen-induced stabilization and tunable electronic structures of penta-silicene: a computational study
- TiC2: a new two-dimensional sheet beyond MXenes.
- Two-dimensional square-pyramidal VO2 with tunable electronic properties
- Linear, planar, and tubular molecular structures constructed by double planar tetracoordinate carbon D2h C2(BeH)4 species via hydrogen‐bridged BeH2Be bonds
- Stability of two-dimensional PN monolayer sheets and their electronic properties.
- Computational design of organometallic oligomers featuring 1,3‐metal‐carbon bonding and planar tetracoordinate carbon atoms
- Robust ferromagnetism in monolayer chromium nitride
- Strain tunable electronic and magnetic properties of pristine and semihydrogenated hexagonal boron phosphide
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- Computational studies on magnetism and the optical properties of transition metal embedded graphitic carbon nitride sheets
- Two-dimensional Cu2Si monolayer with planar hexacoordinate copper and silicon bonding.
- AlxC Monolayer Sheets: Two-Dimensional Networks with Planar Tetracoordinate Carbon and Potential Applications as Donor Materials in Solar Cell.
- Electro-mechanical anisotropy of phosphorene.
- Electronic structures and optical properties of two-dimensional ScN and YN nanosheets
- The search for the most stable structures of silicon-carbon monolayer compounds.
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