Electrochemical synthesis and characterisation of alternating tripyridyl-dipyrrole molecular strands with multiple nitrogen-based donor-acceptor binding sites.

  • Tabatchnik-Rebillon, Alexandra
  • Aubé, Christophe
  • Bakkali, Hicham
  • Delaunay, Thierry
  • Manh, Gabriel Thia
  • Blot, Virginie
  • Thobie-Gautier, Christine
  • Renault, Eric
  • Soulard, Marine
  • Planchat, Aurélien
  • Le Questel, Jean-Yves
  • Le Guével, Rémy
  • Guguen-Guillouzo, Christiane
  • Kauffmann, Brice
  • Ferrand, Yann
  • Huc, Ivan
  • Urgin, Karène
  • Condon, Sylvie
  • Léonel, Eric
  • Evain, Michel
  • Lebreton, Jacques
  • Jacquemin, Denis
  • Pipelier, Muriel
  • Dubreuil, Didier
Publication date
October 2010
Publisher
Wiley

Abstract

International audienceSynthesis of alternating pyridine-pyrrole molecular strands composed of two electron-rich pyrrole units (donors) sandwiched between three pyridinic cores (acceptors) is described. The envisioned strategy was a smooth electrosynthesis process involving ring contraction of corresponding tripyridyl-dipyridazine precursors. 2,6-Bis[6-(pyridazin-3-yl)]pyridine ligands 2a-c bearing pyridine residues at the terminal positions were prepared in suitable quantities by a Negishi metal cross-coupling procedure. The yields of heterocyclic coupling between 2-pyridyl zinc bromide reagents 12a-c and 2,6-bis(6-trifluoromethanesulfonylpyridazin-3-yl)pyridine increased from 68 to 95% following introduction of electron-donating methyl gro...

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