Si6C18: A bispentalene derivative with two planar tetracoordinate carbons
Abstract
Here we show that substituting the ten protons in the dianion of a bispentalene derivative (C18H102-) by six Si2+ dications produces a minimum energy structure with two planar tetracoordinate carbons (ptC). In Si6C18, the ptCs are embedded in the terminal C-5 pentagonal rings and participate in a three-center, two-electron (3c-2e) Si-ptC-Si sigma-bond. Our exploration of the potential energy surface identifies a triphenylene derivative as the putative global minimum. Nevertheless, robustness to Born-Oppenheimer molecular dynamics (BOMD) simulations at 900 and 1500 K supports bispentalene derivative kinetic stability. Chemical bonding analysis reveals ten delocalized pi-bonds, which, according to Huckel's 4n + 2 pi-electron rule, would classify it as an aromatic system. Magnetically induced current density analysis reveals the presence of intense local paratropic currents and a weakly global diatropic current, the latter agreeing with the possible global aromatic character of this specie.
Más información
Título según WOS: | Si6C18: A bispentalene derivative with two planar tetracoordinate carbons |
Título de la Revista: | INTERNATIONAL JOURNAL OF QUANTUM CHEMISTRY |
Volumen: | 123 |
Número: | 1 |
Editorial: | Wiley |
Fecha de publicación: | 2023 |
DOI: |
10.1002/qua.27008 |
Notas: | ISI |