| Literature DB >> 20652134 |
G Forte, A La Magna, I Deretzis, R Pucci.
Abstract
Structure and electronic properties of two unusual boron clusters obtained by fusion of borozene rings have been studied by means of first principles calculations based on the generalized-gradient approximation of the density functional theory. Moreover, a semiempirical tight-binding model has been appropriately calibrated for transport calculations on these clusters. Results show that the pure boron clusters are topologically planar and characterized by (3c-2e) bonds, which can explain, together with the aromaticity (estimated by means of NICS), the remarkable cohesive energy values obtained. Such feature makes these systems competitive with the most stable boron clusters to date. The energy gap values indicate that these clusters possess a semiconducting character, while when the larger system is considered, zero-values of the density of states are found exclusively within the HOMO-LUMO gap. Electron transport calculations within the Landauer formalism confirm these indications, showing semiconductor-like low bias differential conductance for these structures. Differences and similarities with carbon clusters are highlighted in the discussion.Entities:
Year: 2009 PMID: 20652134 PMCID: PMC2893925 DOI: 10.1007/s11671-009-9458-8
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1Clusters B60H12 (left) and B228H24 (right) obtained after geometry optimization. Highlighted in red are the molecule of borozene (left) and the cluster B60H12 (right). In yellow are highlighted the boron atoms in contact with the gold leads in the transport calculations
Figure 2A section of the cluster B228H24; labels from 1 to 17 are also referred to B60H12 in black (red) are reported the principal three-center–two-electron Mayer bond order indices of cluster B6 (B24)
Figure 3Above Density of states and HOMO (in the insets) for cluster B6 (black line) and B24 (red line).Below Density of states and HOMO (in the inset) for Coronene
Energies and percentual contributes of pz orbitals to the composition of HOMO, LUMO and their nearest MOs
| % | % | |||
|---|---|---|---|---|
| HOMO − 3 | −4.73 | 0.36 | −3.67 | 100.00 |
| HOMO − 2 | −4.52 | 99.87 | −3.67 | 99.94 |
| HOMO − 1 | −4.52 | 99.80 | −3.43 | 99.99 |
| HOMO | −3.56 | 99.97 | −3.28 | 99.99 |
| LUMO | −2.23 | 99.81 | −2.12 | 100.00 |
| LUMO + 1 | −1.50 | 91.19 | −2.06 | 100.00 |
| LUMO + 2 | −1.36 | 95.71 | −1.89 | 99.93 |
| LUMO + 3 | −1.36 | 99.94 | −1.89 | 99.94 |
Figure 4In plane contour plot of NICS (X,Y) for B24. The step size of the ghost atoms is about 1 Å
Figure 5Red line (black line): low bias differential conductance of the B6 (B24) molecule ideally contacted with gold leads in the two terminal configurations