| Literature DB >> 34762490 |
Zhen Wang1, Liang Hu1, Nikita Chekshin1, Zhe Zhuang1, Shaoqun Qian1, Jennifer X Qiao2, Jin-Quan Yu1.
Abstract
Dehydrogenative transformations of alkyl chains to alkenes through methylene carbon-hydrogen (C–H) activation remain a substantial challenge. We report two classes of pyridine-pyridone ligands that enable divergent dehydrogenation reactions through palladium-catalyzed β-methylene C–H activation of carboxylic acids, leading to the direct syntheses of α,β-unsaturated carboxylic acids or γ-alkylidene butenolides. The directed nature of this pair of reactions allows chemoselective dehydrogenation of carboxylic acids in the presence of other enolizable functionalities such as ketones, providing chemoselectivity that is not possible by means of existing carbonyl desaturation protocols. Product inhibition is overcome through ligand-promoted preferential activation of C(sp3)–H bonds rather than C(sp2)–H bonds or a sequence of dehydrogenation and vinyl C–H alkynylation. The dehydrogenation reaction is compatible with molecular oxygen as the terminal oxidant.Entities:
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Year: 2021 PMID: 34762490 PMCID: PMC9084903 DOI: 10.1126/science.abl3939
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 63.714