| Literature DB >> 28317882 |
Harry J Shrives1, José A Fernández-Salas1, Christin Hedtke1, Alexander P Pulis1, David J Procter1.
Abstract
Benzothiophenes are heterocyclic constituents of important molecules relevant to society, including those with the potential to meet modern medical challenges. The construction of molecules would be vastly more efficient if carbon-hydrogen bonds, found in all organic molecules, can be directly converted into carbon-carbon bonds. In the case of elaborating benzothiophenes, functionalization of carbon-hydrogen bonds at carbon-number 3 (C3) is markedly more demanding than at C2 due to issues of regioselectivity (C3 versus C2), and the requirement of high temperatures, precious metals and the installation of superfluous directing groups. Herein, we demonstrate that synthetically unexplored but readily accessible benzothiophene S-oxides serve as novel precursors for C3-functionalized benzothiophenes. Employing an interrupted Pummerer reaction to capture and then deliver phenol and silane coupling partners, we have discovered a directing group-free method that delivers C3-arylated and -alkylated benzothiophenes with complete regioselectivity, under metal-free and mild conditions.Entities:
Year: 2017 PMID: 28317882 PMCID: PMC5364387 DOI: 10.1038/ncomms14801
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919
Figure 1C3-functionalized benzothiophenes.
(a) Prevalence of C3 functionalized benzothiophene motifs in biologically active molecules including commercial drugs and others with potential in diverse target areas. (b) Traditional methods of C3 C–H arylation of benzothiophenes rely on transition metals and alkylation at C3 is limited in scope and either requires a directing group or exhibits poor regioselectivity. (c) A metal-free approach to benzothiophene C3 C–H arylation and alkylation employing synthetically unexplored benzothiophene S-oxides does not require a directing group and is completely regioselective by virtue of the interrupted Pummerer reaction mechanism which allows the coupling partner to be delivered in a site-selective manner (this work). DG, directing group.
Metal-free C3 C–H arylation of benzothiophene S-oxides.
Metal-free C3 C–H alkylation of benzothiophene S-oxides.
Figure 2Mechanism of regioselective metal-free C3 C–H functionalization of benzothiophene S-oxides.
Activated benzothiophene S-oxides III capture nucleophilic coupling partners prior to regioselective delivery to C3 via a charge accelerated [3,3]-sigmatropic rearrangement of intermediates I and II. The expected products of direct addition of nucleophiles to III, the para-substituted phenols 11, alkenes 12 and allenes 13, were not observed. Nu, nucleophile.