Chemoselective Catalytic Alpha-Functionalization Of Carboxylic Acid Equivalent And Carboxylic Acid Through Radical Process

Journal of Synthetic Organic Chemistry Japan(2021)

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摘要
Enolization of carboxylic acid derivatives is the central science of fundamental carbonyl chemistry. The catalytic methods to activate carboxylic acid remained unexplored due to the intrinsic low acidity of alpha-protons, although enormous examples of catalytic activation (enolization) method for aldehydes, ketones, and ester derivatives have been reporteld. The innate Bronsted acidic carboxylic.acid functionality also disrupts the deprotonation Of alpha-protons. Therefore, more than two equivalents of a strong base such as lithium diisoprOpylamide are required for efficient enolization, which makes chemoselective enolization of carboxylico acid over more acidic carbonyls a formidable task. Furthermore, recent enolization methods were only applied to redox-neutral coupling using 2e(-) electrophiles and catalytic alpha-functionalization of carboxylic acids through a le(-) radical process, which could complement the chemolectivity, and functional group tolerance restricted in the classical 2e(-) ion reaction, has never been achieved. Herein, we developed chemoselective catalytic activation of carboxylic acid equivalent, acylpyrazole, and carboxylic acid for a le(-) radical process without external addition of stoichiometric amounts of Bronsted base. The present chemoselective catalysis could be applied to late-stage aamination and oxidation, allowing for concise access to highly versatile unnatural 'a-amino acid and hydroxy acid derivatives. Moreover, chemoselective a-functionalization of less reactive carboxylic acids was achieved over innately more reactive carbonyl functionalities.
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关键词
carboxylic acid, chemoselectivity, enolate, radical, alpha-amination, alpha-oxidation, late-stage functionalization
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