The umpolung functionalization of imines bears vast synthetic potential, but polarity inversion is less efficient compared with the carbonyl counterparts. Strong nucleophiles are often required to react with the N-electrophiles without catalytic and stereochemical control. Here we show an effective strategy to realize umpolung of imines promoted by organocatalytic aromatization. The attachment of strongly electron-withdrawing groups to imines could enhance the umpolung reactivity by both electronegativity and aromatic character, enabling the direct amination of (hetero)arenes with good efficiencies and stereoselectivities. Additionally, the application of chiral Brønsted acid catalyst furnishes (hetero)aryl C-N atropisomers or enantioenriched aliphatic amines via dearomative amination from N-electrophilic aromatic precursors. Control experiments and density functional theory calculations suggest an ionic mechanism for the umpolung reaction of imines. This disconnection expands the options to forge C-N bonds stereoselectively on (hetero)arenes, which represents an important synthetic pursuit, especially in medicinal chemistry.
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http://dx.doi.org/10.1038/s41557-023-01384-x | DOI Listing |
J Org Chem
December 2024
Department of Applied Chemistry, Graduate School of Science and Engineering, Ehime University, 3 Bunkyo-cho, Matsuyama 790-8577, Japan.
Versatile P-N and P-O bond-forming reactions by an umpolung approach using air- and moisture-stable hydroxymethylphosphine sulfides were developed. Phosphine sulfides containing multiple hydroxymethyl groups could undergo sequential transformations combining P-N and P-O as well as P-C bond formations, providing a novel protocol for the synthesis of a variety of organophosphorus(V) compounds with P-N and P-O bonds.
View Article and Find Full Text PDFChem Soc Rev
December 2024
Department of Organic Chemistry, Indian Institute of Science, Bangalore 560012, India.
N-Heterocyclic carbenes (NHCs) have been used as organocatalysts for a multitude of C-C and C-heteroatom bond-forming reactions. They enable diverse modalities of activating a wide range of structurally distinct substrate classes and allow access to electronically distinct intermediates. The easy tunability of the NHC scaffold contributes to its versatility.
View Article and Find Full Text PDFOrg Lett
December 2024
Department of Chemical Sciences, Tezpur University, Napaam, Sonitpur, Assam, India 784028.
We herein report the serendipitous discovery of the interrupted Plancher rearrangement initiated by an HFIP-promoted dearomative epoxide-indole cyclization, unlocking a new blueprint to the formal C3 umpolung reactivity of indoles. This rapid complexity generating cascade process paves the way toward a new class of fused-bridged indolines in high yields and under full regio- and diastereocontrol. The reaction is amenable to a wide range of substituents in the starting materials.
View Article and Find Full Text PDFJ Org Chem
December 2024
College of Chemical & Pharmaceutical Engineering, Hebei Province Key Laboratory of Molecular Chemistry for Drug, Hebei University of Science & Technology, Shijiazhuang 050018, China.
We report herein that three facile rearrangements of epoxy ketones can be employed for the efficient and practical synthesis of cephalotaxine, the parent member of the family of alkaloids. The Meinwald rearrangement of epoxy ketone (90%) was used for the preparation of the dense functional groups in the cyclopentane ring of cephalotaxine. A novel acid-catalyzed umpolung S2' rearrangement and the Wharton transposition reaction of epoxy ketones were also developed to synthesize the Mori intermediate via the key azaspiro allylic alcohols in a stereodivergent manner.
View Article and Find Full Text PDFChem Rec
December 2024
School of Pharmacy and Food Engineering, Wuyi University, Jiangmen, 529020, China.
N-heterocyclic carbene (NHC) organocatalysis has been developed as a powerful tool in modern synthetic chemistry. NHC catalytic activation of ynals and alkynoic acid derivatives provided versatile reactions that involve acetylenic Breslow and/or acylazolium as key intermediates, and diverse transformations have been established for access to molecules with unique skeletons in efficient fashions. Herein we summarize the recent achievements in NHC-catalyzed reactions involving acetylenic Breslow and/or acylazolium intermediates.
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