| Literature DB >> 34958592 |
Yuanyun Gu1, Zhen Zhang1, Yan-En Wang2, Ziteng Dai1, Yaqi Yuan1, Dan Xiong1, Jie Li3, Patrick J Walsh4, Jianyou Mao1.
Abstract
Chemoselective deprotonative functionalization of benzylic C-H bonds is challenging, because the arene ring contains multiple aromatic C(sp2)-H bonds, which can be competitively deprotonated and lead to selectivity issues. Recently it was found that bimetallic [MN(SiMe3)2 M = Li, Na]/Cs+ combinations exhibit excellent benzylic selectivity. Herein, is reported the first deprotonative addition of toluenes to Weinreb amides mediated by LiN(SiMe3)2/CsF for the synthesis of a diverse array of 2-arylacetophenones. Surprisingly, simple methyl benzoates also react with toluenes under similar conditions to form 2-arylacetophenones without double addition to give tertiary alcohol products. This finding greatly increases the practicality and impact of this chemistry. Some challenging substrates with respect to benzylic deprotonations, such as fluoro and methoxy substituted toluenes, are selectively transformed to 2-aryl acetophenones. The value of benzylic deprotonation of 3-fluorotoluene is demonstrated by the synthesis of a key intermediate in the preparation of Polmacoxib.Entities:
Year: 2021 PMID: 34958592 DOI: 10.1021/acs.joc.1c02446
Source DB: PubMed Journal: J Org Chem ISSN: 0022-3263 Impact factor: 4.354