Issue 10, 2004

Decarboxylative elimination of enol triflates as a general synthesis of acetylenes

Abstract

The enol trifluoromethanesulfonates 4, 8, 12, 17 and 20 of tert-butyl β-ketodiesters and β-ketoesters can be hydrolysed to the corresponding carboxylic acids by dissolution in trifluoroacetic acid. The dicarboxylic acids undergo mild decarboxylative elimination to give the acetylenic acids 4 and 9 in aqueous sodium bicarbonate solution at room temperature. Similarly, the monocarboxylic acids give the terminal and mid-chain acetylenes 13, 18, 21 and 24 by refluxing in acetone with potassium carbonate. One of the substituents on the acetylenes can be methyl, primary alkyl, secondary alkyl or ethynyl, and the other can be a carboxylic acid, hydrogen or primary alkyl, but the enol trifluoromethanesulfonates could not be prepared when one of the substituents was tert-butyl, nor when both substituents on the precursor to the acetylene were secondary alkyl.

Graphical abstract: Decarboxylative elimination of enol triflates as a general synthesis of acetylenes

Article information

Article type
Paper
Submitted
02 Feb 2004
Accepted
19 Mar 2004
First published
21 Apr 2004

Org. Biomol. Chem., 2004,2, 1504-1510

Decarboxylative elimination of enol triflates as a general synthesis of acetylenes

I. Fleming and C. Ramarao, Org. Biomol. Chem., 2004, 2, 1504 DOI: 10.1039/B401435A

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