Tuning aromaticity of cyclocarbons by heteroatom doping

Read the full article See related articles

Listed in

This article is not in any list yet, why not save it to one of your lists.
Log in to save this article

Abstract

Cyclo[ n ]carbons (C n ) have sparked substantial interest among experimentalists and theoreticians owing to their elusive geometric structures and unique aromaticity. Composed of two-coordinated sp-hybridized carbon atoms, C n thus forms two perpendicular conjugated π-electron systems, i.e., out-of-plane and in-plane. Till now, on-surface generated cyclocarbons are either doubly aromatic or doubly anti-aromatic, as the number of electrons within out-of-plane and in-plane π systems was equal. Doping with heteroatoms allows one to create two π systems with different numbers of electrons, and to tune the aromaticity. Herein, we successfully generated two heteroatom-doped cyclocarbons, C 12 S and C 12 N, and characterized their chemical and electronic structures. Calculations show that C 12 S exhibits out-of-plane (14 e ) aromatic and in-plane (12 e ) anti-aromatic character, resulting in a total non-aromaticity. For C 12 N, the out-of-plane (14 e ) aromatic and in-plane (13 e ) non-aromatic characters lead to a total aromaticity. Doping with heteroatoms may open up the field of aromaticity engineering within cyclocarbons.

Article activity feed