Starlike Aluminum-Carbon Aromatic Species

Wu, YB; Jiang, JL; Lu, HG; Wang, ZX; Perez-Peralta, N; Islas, R; Contreras M.; Merino, G; Wu, JIC; Schleyer, PV

Keywords: aromaticity, aluminum, carbon, computational chemistry, global minimum

Abstract

Is it possible to achieve molecules with starlike structures by replacing the H atoms in (CH)(n)(q) aromatic hydrocarbons with aluminum atoms in bridging positions? Although D(4h) C(4)Al(4)(2-) and D(2) C(6)Al(6) are not good prospects for experimental realization, a very extensive computational survey of fifty C(5)Al(5)(-) isomers identified the starlike D(5h) global minimum with five planar tetracoordinate carbon atoms to be a promising candidate for detection by photoelectron detachment spectroscopy. BOMD (Born-Oppenheimer molecular dynamics) simulations and high-level theoretical computations verified this conclusion. The combination of favorable electronic and geometric structural features (including aromaticity and optimum C-Al-C bridge bonding) stabilizes the C(5)Al(5)(-) star preferentially.

Más información

Título según WOS: Starlike Aluminum-Carbon Aromatic Species
Título de la Revista: CHEMISTRY-A EUROPEAN JOURNAL
Volumen: 17
Número: 2
Editorial: WILEY-V C H VERLAG GMBH
Fecha de publicación: 2011
Página de inicio: 714
Página final: 719
Idioma: English
DOI:

10.1002/chem.201001266

Notas: ISI