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A highly efficient three-component coupling of aldehyde, alkyne, and amines via C-H activation catalyzed by gold in water.

A highly efficient three-component coupling of aldehyde, alkyne, and amines via C-H activation... A highly efficient three-component-coupling of aldehyde, alkyne, and amine (A3 Coupling) catalyzed by gold via C-H activation was developed in water. The reaction is general, and nearly quantitative yields of the corresponding propargylamines were obtained in most cases. Both aromatic and aliphatic aldehydes and amines can be used for the reaction. No additional cocatalyst or activator is required. A mechanistic rationale for the reaction has been proposed. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Journal of the American Chemical Society Pubmed

A highly efficient three-component coupling of aldehyde, alkyne, and amines via C-H activation catalyzed by gold in water.

Journal of the American Chemical Society , Volume 125 (32): -9578 – Nov 18, 2003

A highly efficient three-component coupling of aldehyde, alkyne, and amines via C-H activation catalyzed by gold in water.


Abstract

A highly efficient three-component-coupling of aldehyde, alkyne, and amine (A3 Coupling) catalyzed by gold via C-H activation was developed in water. The reaction is general, and nearly quantitative yields of the corresponding propargylamines were obtained in most cases. Both aromatic and aliphatic aldehydes and amines can be used for the reaction. No additional cocatalyst or activator is required. A mechanistic rationale for the reaction has been proposed.

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ISSN
0002-7863
DOI
10.1021/ja0359299
pmid
12904013

Abstract

A highly efficient three-component-coupling of aldehyde, alkyne, and amine (A3 Coupling) catalyzed by gold via C-H activation was developed in water. The reaction is general, and nearly quantitative yields of the corresponding propargylamines were obtained in most cases. Both aromatic and aliphatic aldehydes and amines can be used for the reaction. No additional cocatalyst or activator is required. A mechanistic rationale for the reaction has been proposed.

Journal

Journal of the American Chemical SocietyPubmed

Published: Nov 18, 2003

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