AI Article Synopsis

  • A new method has been developed to prepare difunctionalized quinolines with thiocarbamate and acyloxyl groups, using quinolinones, tetraalkylthiuram disulfides, and hypervalent iodine(III) at room temperature.
  • This process operates under mild conditions, is tolerant of various functional groups, and yields good results while being easy to scale for larger productions.
  • It's particularly significant for incorporating bioactive compounds in later stages, with mechanisms suggesting that radicals and water may play key roles in forming the final products.

Article Abstract

A novel and practical method for the preparation of difunctionalized quinolines, bearing a thiocarbamate group at the C3-position and an acyloxyl group at the C4-position, and quinolinonyl thiocarbamates from quinolinones, tetraalkylthiuram disulfides, and hypervalent iodine(III) reagents has been developed via thiocarbamation of quinolinones at room temperature. The present method features mild reaction conditions, good tolerance with diverse functional groups, and a wide substrate scope, providing the desired products in good yields. Furthermore, this transformation is easy to scale up, and the desired products can be readily converted to heterocyclic thiols. Most importantly, this protocol allows for the late-stage thiocarbamation of bioactive compounds. Mechanistic studies show that radicals may be involved in this transformation, water is probably the oxygen source of thiocarbamates, and difunctionalized quinolines are possibly formed via nucleophilic attack of carboxylic anions, which derive from hypervalent iodine(III) reagents.

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http://dx.doi.org/10.1021/acs.joc.3c01504DOI Listing

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Article Synopsis
  • A new method has been developed to prepare difunctionalized quinolines with thiocarbamate and acyloxyl groups, using quinolinones, tetraalkylthiuram disulfides, and hypervalent iodine(III) at room temperature.
  • This process operates under mild conditions, is tolerant of various functional groups, and yields good results while being easy to scale for larger productions.
  • It's particularly significant for incorporating bioactive compounds in later stages, with mechanisms suggesting that radicals and water may play key roles in forming the final products.
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