4.6 Article

Regiocontrolled Remote C-H Olefination of Small Heterocycles

Journal

CHEMISTRY-A EUROPEAN JOURNAL
Volume 24, Issue 68, Pages 17906-17910

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.201804351

Keywords

bifunctional; catalysis; C-H activation; nitrogen heterocycles; remote-selectivity

Funding

  1. DST [EMR/2015/000164]
  2. SERB-NPDF [PDF/2016/002187]
  3. CSIR
  4. UGC
  5. IITB

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Achieving site-selective C-H functionalization of arene is a fundamental challenge, as it is mainly controlled by the electronic nature of the molecules. A chelation-assisted C-H functionalization strategy overcomes the selectivity issues by utilizing distance and geometry of covalently attached directing groups (DGs). This strategy requires stoichiometric DG installation/removal and a suitable functional group on which to tether the DG. Such strategies are ineffective for small heterocycles unless suitable functional groups are added. Moreover, heterocycles are not the judicious choice as substrates owing to the possibilities of catalyst deactivation. Inspired by recent developments, this work demonstrates the utilization of a chelating template backbone bearing covalently attached directing groups, which enables site-selective remote C-H functionalization of heterocycles. The observed selectivity is the outcome of non-covalent interactions between the heterocycles and bifunctional template backbone.

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