4.8 Article

Three-dimensional aromaticity in an antiaromatic cyclophane

Journal

NATURE COMMUNICATIONS
Volume 10, Issue -, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-019-11467-4

Keywords

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Funding

  1. JSPS KAKENHI [JP26102003, JP15K21721, JP17H01190]
  2. JSPS A3 Foresight Program
  3. Murata Science Foundation
  4. NSF [CHE-1664674]
  5. Samsung Science and Technology Foundation [SSTF-BA1402-10]
  6. Norwegian Research Council through the CoE Hylleraas Centre for Quantum Molecular Sciences [262695, 231571/F20]
  7. Norwegian Supercomputing Program (NOTUR) [NN4654K]
  8. [JP17J09817]

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Understanding of interactions among molecules is essential to elucidate the binding of pharmaceuticals on receptors, the mechanism of protein folding and self-assembling of organic molecules. While interactions between two aromatic molecules have been examined extensively, little is known about the interactions between two antiaromatic molecules. Theoretical investigations have predicted that antiaromatic molecules should be stabilized when they stack with each other by attractive intermolecular interactions. Here, we report the synthesis of a cyclophane, in which two antiaromatic porphyrin moieties adopt a stacked face-to-face geometry with a distance shorter than the sum of the van der Waals radii of the atoms involved. The aromaticity in this cyclophane has been examined experimentally and theoretically. This cyclophane exhibits three-dimensional spatial current channels between the two subunits, which corroborates the existence of attractive interactions between two antiaromatic pi-systems.

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