Issue 6, 2013

Chemoselective esterification of α-hydroxyacids catalyzed by salicylaldehyde through induced intramolecularity

Abstract

A new, direct and chemoselective esterification of α-hydroxyacids was developed using a reversible covalent-binding strategy. By taking advantage of acetal chemistry, simple aldehydes can be used to efficiently catalyze the esterification of α-hydroxy carboxylic acids in the presence of β-hydroxyacid moieties or other carboxylic acids in amounts equal to or in excess of the alcohols. A diverse array of α-aryl, α-alkyl, α-heteroaryl, and functionalized α-hydroxyacids were smoothly esterified with 1° and 2° alcohols catalyzed by 10 mol% inexpensive and commercially available salicylaldehyde, furnishing the resultant esterification products in 83–95% yields after a simple basic aqueous workup to remove the unreacted hydroxyacids. In addition, the salicylaldehyde can be recovered through vacuum distillation or silica gel purification, thereby meeting the standards of green chemistry. A mechanistic study proved that the formation of covalent adduct III during our proposed catalytic cycle (Scheme 1A) is responsible for the real catalysis.

Graphical abstract: Chemoselective esterification of α-hydroxyacids catalyzed by salicylaldehyde through induced intramolecularity

Supplementary files

Article information

Article type
Paper
Submitted
26 Nov 2012
Accepted
28 Nov 2012
First published
28 Nov 2012

RSC Adv., 2013,3, 1976-1986

Chemoselective esterification of α-hydroxyacids catalyzed by salicylaldehyde through induced intramolecularity

S. Weng, H. Li and T. Yang, RSC Adv., 2013, 3, 1976 DOI: 10.1039/C2RA23068B

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