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Aromatic and antiaromatic ring currents in a molecular nanoring

Author

Listed:
  • Martin D. Peeks

    (University of Oxford, Chemistry Research Laboratory)

  • Timothy D. W. Claridge

    (University of Oxford, Chemistry Research Laboratory)

  • Harry L. Anderson

    (University of Oxford, Chemistry Research Laboratory)

Abstract

By investigating ring currents, a six-porphyrin nanoring molecule is shown to be antiaromatic in its 4+ oxidation state and aromatic in its 6+ oxidation state.

Suggested Citation

  • Martin D. Peeks & Timothy D. W. Claridge & Harry L. Anderson, 2017. "Aromatic and antiaromatic ring currents in a molecular nanoring," Nature, Nature, vol. 541(7636), pages 200-203, January.
  • Handle: RePEc:nat:nature:v:541:y:2017:i:7636:d:10.1038_nature20798
    DOI: 10.1038/nature20798
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    Cited by:

    1. Naoki Narita & Yusuke Kurita & Kohtaro Osakada & Tomohito Ide & Hidetoshi Kawai & Yoshitaka Tsuchido, 2023. "A dodecamethoxy[6]cycloparaphenylene consisting entirely of hydroquinone ethers: unveiling in-plane aromaticity through a rotaxane structure," Nature Communications, Nature, vol. 14(1), pages 1-10, December.

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