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Are oxocarbon dianions aromatic?

Schleyer1, Najafian, Kiran

  • 1Computational Chemistry Annex, University of Georgia, Athens, Georgia 30602-2525, and Institut fur Organische Chemie der Universitat Erlangen-Nurnberg, Henkestrasse 42, D-91054 Erlangen, Germany.

The Journal of Organic Chemistry
|May 18, 2000
PubMed
Summary

Oxocarbon dianions exhibit varying degrees of aromaticity, with C3O3(2-) being doubly aromatic. Cyclic electron delocalization was assessed using structural, energetic, and magnetic criteria for these compounds.

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Area of Science:

  • Theoretical Chemistry
  • Computational Chemistry
  • Organic Chemistry

Background:

  • Aromaticity is a key concept in chemistry, influencing molecular stability and reactivity.
  • Oxocarbons and their dianions represent a class of compounds with potential aromatic character.
  • Understanding electron delocalization is crucial for predicting molecular properties.

Purpose of the Study:

  • To assess the cyclic electron delocalization and aromaticity of oxocarbon dianions (CnOn(2-)) and their neutral counterparts (CnOn) for n = 3-6.
  • To investigate the contributions of sigma and pi electron delocalization to aromaticity.
  • To analyze the influence of ring size on aromatic properties.

Main Methods:

  • Utilized structural, energetic, and magnetic criteria to evaluate aromaticity.

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  • Employed the Individual Gauge for Localized Orbitals (IGLO) method to compute localized orbital contributions.
  • Calculated nucleus-independent chemical shifts (NICS) to probe electron delocalization.
  • Main Results:

    • C3O3(2-) exhibits double aromaticity (sigma and pi delocalization).
    • C4O4(2-) shows moderate aromaticity, while C5O5(2-) and C6O6(2-) display reduced aromaticity.
    • The pi contribution to NICS decreases with increasing ring size in oxocarbon dianions.
    • Neutral C4O4 displays cyclic electron delocalization via partial sigma bond occupancy.
    • All neutral oxocarbons possess highly exothermic dissociation energies.

    Conclusions:

    • Aromaticity in oxocarbon dianions is size-dependent, with smaller rings being more aromatic.
    • Both sigma and pi electron delocalization contribute to the aromatic character of these systems.
    • Neutral oxocarbons, despite delocalization, are thermodynamically unstable towards dissociation.