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Journal ArticleDOI

Umpolung Reactions of α-Imino Esters: Useful Methods for the Preparation of α-Amino Acid Frameworks.

Isao Mizota, +1 more
- 01 Apr 2016 - 
- Vol. 16, Iss: 2, pp 688-702
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TLDR
This paper summarizes the recent efforts toward the development of tandem reactions utilizing umpolung reactions of α-imino esters, and discovers a highly regioselective tandem N-alkylation-vinylogous aldol reaction of β,γ-alkenyl α-IMino Esters.
Abstract
This paper summarizes our recent efforts toward the development of tandem reactions utilizing umpolung reactions of α-imino esters. A highly diastereoselective tandem N-alkylation-Mannich reaction of α-imino esters was developed. A tandem N-alkylation-addition reaction of α-imino esters derived from ethyl glyoxylate with various aldehydes proceeded to give 1,2-amino alcohols. The same reaction also proceeded efficiently using a novel flow system comprising two connected microreactors. Novel syntheses of α-quaternary alkynyl amino esters and allenoates were developed through the use of umpolung N-addition to β,γ-alkynyl α-imino esters, followed by regioselective acylation. In addition, a highly regioselective tandem N-alkylation-vinylogous aldol reaction of β,γ-alkenyl α-imino esters was discovered. N-Alkylation of α-iminophosphonates followed by a Horner-Wadsworth-Emmons reaction with aldehydes occurred to afford enamines, which can be used in a four-component coupling reaction with methyl vinyl ketone. α-N-Acyloxyimino esters served as highly efficient substrates for the N,N,C-trialkylation reaction to introduce various nucleophiles at the imino nitrogen and carbon atoms.

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Journal ArticleDOI

α-Imino Esters in Organic Synthesis: Recent Advances

TL;DR: This review discusses the mechanism, scope, and applications of the reactions of α-imino esters and related compounds in organic synthesis, covering the literature from the last 12 years.
Journal ArticleDOI

Practical Singly and Doubly Electrophilic Aminating Agents: A New, More Sustainable Platform for Carbon–Nitrogen Bond Formation

TL;DR: A general and fundamentally new synthetic approach for the direct, transition-metal-free preparation of symmetrical and unsymmetrical diaryl-, arylalkyl-, and dialkylamines that relies on the facile single or double addition of readily available C-nucleophiles to the nitrogen atom of bench-stable electrophilic aminating agents.
Journal ArticleDOI

Iron-Catalyzed Reductive Ethylation of Imines with Ethanol

TL;DR: The borrowing hydrogen strategy has been applied to the ethylation of imines with an air-stable iron complex as precatalyst, which enables the synthesis of unsymmetric tertiary amines from readily available substrates and ethanol as a C2 building block.
Journal ArticleDOI

Dirhodium(II)/Xantphos-Catalyzed Relay Carbene Insertion and Allylic Alkylation Process: Reaction Development and Mechanistic Insights.

TL;DR: In this paper, an attractive three-component reaction of readily accessible amines, diazo compounds, and allylic compounds enabled by a novel dirhodium(II)/Xantphos catalysis is disclosed, affording various architecturally complex and functionally diverse α-quaternary α-amino acid derivatives in good yields with high atom and step economy.
Journal ArticleDOI

Brønsted Base‐Catalyzed Umpolung Intramolecular Cyclization of Alkynyl Imines

TL;DR: A novel "umpolung" intramolecular cyclization of alkynyl imines, in which the electrophilic imine sp2 -carbon formally serves as a nucleophilic site, was developed under Brønsted base catalysis and is the first catalytic carbon-carbon bond forming reaction utilizing the resulting carbanion as aucleophile.
References
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Journal ArticleDOI

Stereoselective Cyclopropanation Reactions

TL;DR: This review will focus mainly on the new methods that have appeared in the literature since 1989 for stereoselective cyclopropanation reactions from olefins: the halomethylmetal-mediated cycloalkane reactions, the transition metal-catalyzed decomposition of diazo compounds, and the nucleophilic addition-ring closure sequence.
Journal ArticleDOI

Nitrogen-containing ligands for asymmetric homogeneous and heterogeneous catalysis.

TL;DR: It is shown here how the structure of the C−O Bond Formation following C−H Bond Oxidation following Baeyer−Villiger-type Reaction and Wacker-type Cyclization influenced the formation of the S−N Bond Formation.
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