4.6 Review

Transition-Metal-Free Heterocyclic Carbon-Boron Bond Formation

Journal

CHEMISTRY-A EUROPEAN JOURNAL
Volume 28, Issue 44, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.202200556

Keywords

borane; borocation; borylation; C-H activation; electrophilic substitution; frustrated Lewis pair

Funding

  1. DST [SB/S2/RJN-171/2017]
  2. IIT Kharagpur ISIRD grants
  3. IIT Kharagpur
  4. CSIR

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This article summarizes the current research status and methods of transition-metal-free synthesis of heteroaryl boronic acids and esters. The transition-metal-free synthesis methods are environmentally friendly, economically advantageous, and have replaced transition-metal-based synthesis methods.
Heteroaryl boronic acids and esters are extremely important and valuable intermediates because of their wide application in the synthesis of marketed drugs and bioactive compounds. Over the last couple of decades, the construction of highly important heteroaryl carbon-boron bonds has created huge attention. The transition-metal-free protocols are more green, less sensitive to air and moisture, and also economically advantageous over the transition-metal-based protocols. The transition-metal-free C-H borylation of heteroarenes and C-X (X=halogen) borylation of heteroaryl halides represents an excellent approach for their synthesis. Also, various cyclization and alkyne activation protocols have been recently established for their synthesis. The goal of this review article is to summarize the existing literature and the current state of the art for transition-metal-free synthesis of heteroaryl boronic acid and esters.

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