AI Article Synopsis

  • The synthesis of meta- and para-SF5-substituted pyridines is highlighted as a rare achievement in organic chemistry.
  • The key method involves oxidative chlorotetrafluorination of disulfides followed by chloride/fluoride exchange, requiring at least one fluorine atom on the pyridine ring for successful transformation.
  • This new approach opens up access to various SF5-substituted pyridine building blocks, allowing for further chemical modifications using nucleophiles.

Article Abstract

Although there are ways to synthesize ortho-pentafluoro-λ(6) -sulfanyl (SF5 ) pyridines, meta- and para-SF5 -substituted pyridines are rare. We disclose herein a general route for their synthesis. The fundamental synthetic approach is the same as reported methods for ortho-SF5 -substituted pyridines and SF5 -substituted arenes, that is, oxidative chlorotetrafluorination of the corresponding disulfides to give pyridylsulfur chlorotetrafluorides (SF4 Cl-pyridines), followed by chloride/fluoride exchange with fluorides. However, the trick in this case is the presence on the pyridine ring of at least one fluorine atom, which is essential for the successful transformation of the disulfides into m-and p-SF5 -pyridines. After enabling the synthesis of an SF5 -substituted pyridine, ortho-F groups can be efficiently substituted by C, N, S, and O nucleophiles through an SN Ar pathway. This methodology provides access to a variety of previously unavailable SF5 -substituted pyridine building blocks.

Download full-text PDF

Source
http://dx.doi.org/10.1002/anie.201605008DOI Listing

Publication Analysis

Top Keywords

sf5 -substituted
12
-substituted pyridines
8
-substituted pyridine
8
-substituted
5
fluorine substituent
4
substituent preparation
4
preparation meta-
4
meta- para-pentafluoro-λ6
4
para-pentafluoro-λ6 -sulfanyl-substituted
4
pyridines
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!