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Synthesis of polysubstituted pyridazines via Cu-mediated C(sp 3 )-C(sp 3 ) coupling/annulation of saturated ketones with acylhydrazones.

Honggui ZhouZhefeng LiJuehong ChenSi ZhouXinyu WangLinwei ZhangJiuxi ChenNingning Lv
Published in: Chemical communications (Cambridge, England) (2024)
Pyridazine is a significant skeleton that widely exists in drugs and bioactive molecules. We herein describe expeditious approaches to access polysubstituted pyridazines from readily accessible unactivated ketones and acylhydrazones via Cu-promoted C(sp 3 )-C(sp 3 ) coupling/cyclization sequences in a single-step fashion. Notably, the disparate 3,4,6-trisubstituted pyridazines and 3,5-disubstituted pyridazines could be obtained by tailoring the ketone's structure and reaction conditions. These transformations feature good functional group compatibility, excellent step-economy, and chemoselectivity. The potential synthetic utility of these conversions is illustrated by scale-up reactions and late-stage derivatizations of the as-prepared pyridazine products.
Keyphrases
  • room temperature
  • electron transfer
  • drug induced
  • genetic diversity