homoaromaticity
Sign in to saveHomoaromaticity, in organic chemistry, refers to a special case of aromaticity in which conjugation is interrupted by a single sp3 hybridized carbon atom. Although this sp3 center disrupts the continuous overlap of p-orbitals, traditionally thought to be a requirement for aromaticity, considerable thermodynamic stability and many of the spectroscopic, magnetic, and chemical properties associated with aromatic compounds are still observed for such compounds. This formal discontinuity is apparently bridged by p-orbital overlap, maintaining a contiguous cycle of π electrons that is responsible fo
~21 min read
Article
24 sectionsContents
- Overview
- Naming
- History
- Evidence for homoaromaticity
- Criterion for homoaromaticity
- Early evidence for homoaromaticity
- NMR spectroscopy studies
- UV spectroscopy studies
- More recent evidence for homoaromaticity
- Molecular orbital description
- Perturbation molecular orbital theory
- First-order effects
- Second-order effects
- Second homoconjugate linkage
- Substituents
- Examples of homoaromatic compounds
- Cationic homoaromatics
- Neutral homoaromatics
- Bishomoaromatics
- Trishomoaromatics
- Anionic homoaromatics
- Antihomoaromaticity
- External links
- References
Homoaromaticity, in organic chemistry, refers to a special case of aromaticity in which conjugation is interrupted by a single sp3 hybridized carbon atom. Although this sp3 center disrupts the continuous overlap of p-orbitals, traditionally thought to be a requirement for aromaticity, considerable thermodynamic stability and many of the spectroscopic, magnetic, and chemical properties associated with aromatic compounds are still observed for such compounds. This formal discontinuity is apparently bridged by p-orbital overlap, maintaining a contiguous cycle of π electrons that is responsible for this preserved chemical stability.
thumb|The homoaromatic homotropylium cation (C8H9+) The concept of homoaromaticity was pioneered by Saul Winstein in 1959, prompted by his studies of the “tris-homocyclopropenyl” cation. Since the publication of Winstein's paper, much research has been devoted to understanding and classifying these molecules, which represent an additional class of aromatic molecules included under the continuously broadening definition of aromaticity.