Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5355580 | Applied Surface Science | 2016 | 15 Pages |
Abstract
Single-layer honeycomb heterojunction structures based on alternated and coupled ribbons of BAs and AlN are investigated using first-principles density functional theory calculations. Optimized geometries, density of states, band-gaps, formation energies, and wave functions are studied for different ribbon widths joined along the zigzag and armchair edges. Optimized heterojunction geometries results revealed that BAs narrow ribbons exhibit a corrugation effect at the interface due to a lattice mismatch. From formation energy calculations, it was found that zigzag heterojunctions are more stable than the armchair heterojunctions.
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Authors
Dulce C. Camacho-Mojica, Florentino López-UrÃas,