Abstract
The effect of single vacancy on the structural, electronic and magnetic properties of monolayer graphyne is investigated by the first-principles calculations. The calculated results reveal that single vacancy can result in the spin polarization in monolayer graphyne and the spin polarization is sensitive to local geometric structure of the vacancy. In the case of monolayer graphyne with one single vacancy at the sp2 hybridized C site, the vacancy introduces rather weakly spin-polarized, flat bands in the band gap. Due to the localization nature of the defect-induced bands, the magnetic moment is mainly localized at the vacancy site. As for the monolayer graphyne with one single vacancy at the sp hybridized C site, one defect-induced state which is highly split appears in the band gap. The spin-up band of the defect-induced state is highly dispersive and shows considerable delocalization, suggesting that the magnetic moment is dispersed around the vacancy site. The above magnetization in monolayer graphyne with one single vacancy is possibly explained in terms of the valence-bond theory.
Original language | English |
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Pages (from-to) | 439-444 |
Number of pages | 6 |
Journal | Materials Chemistry and Physics |
Volume | 182 |
DOIs | |
State | Published - 1 Oct 2016 |
Externally published | Yes |
Keywords
- Ab initio calculations
- Defects
- Electronic structure
- Magnetic properties
- Nanostructures