| Literature DB >> 30886445 |
Tanay Kesharwani1, Cory Kornman1, Amanda Tonnaer1, Amanda Hayes1, Seoyoung Kim2, Nikesh Dahal2, Ralf Romero1, Andrew Royappa1.
Abstract
A convenient methodology for the synthesis of mono- and di-halogenated benzo[b]thiophenes is described herein, which utilizes copper(II) sulfate pentahydrate and various sodium halides in the presence of substituted 2-alkynylthioanisoles. The proposed method is facile, uses ethanol as a green solvent, and results in uniquely substituted benzo[b]thiophene structures with isolated yields up to 96%. The most useful component of this methodology is the selective introduction of bromine atoms at every available position (2-7) around the benzo[b]thiophene ring, while keeping position 3 occupied by a specific halogen atom such as Cl, Br or I. Aromatic halogens are useful reactive handles; therefore, the selective introduction of halogens at specific positions would be valuable in the targeted synthesis of bioactive molecules and complex organic materials via metal-catalyzed cross coupling reactions. This work is a novel approach towards the synthesis of dihalo substituted benzo[b]thiophene core structures, which provides a superior alternative to the current methods discussed herein.Entities:
Keywords: Benzo[b]thiophene; Bromocyclization; Chlorocyclization; Iodocyclization; dihalobenzo[b]thiophene
Year: 2018 PMID: 30886445 PMCID: PMC6420224 DOI: 10.1016/j.tet.2018.04.080
Source DB: PubMed Journal: Tetrahedron ISSN: 0040-4020 Impact factor: 2.457