Issue 27, 2023

Synthesis of oxetane and azetidine ethers as ester isosteres by Brønsted acid catalysed alkylation of alcohols with 3-aryl-oxetanols and 3-aryl-azetidinols

Abstract

Oxetanes and azetidines continue to draw significant interest in medicinal chemistry, as small, polar and non-planar motifs. Oxetanes also represent interesting surrogates for carbonyl-containing functional groups. Here we report a synthesis of 3,3-disubstituted oxetane- and azetidine-ethers, with comparisons made to the ester functional group. The tertiary benzylic alcohols of the 4-membered rings are selectively activated using Brønsted acid catalysis and reacted with simple alcohols to form the ethers and maintain the oxetane ring intact. This approach avoids the use of strong bases and halide alkylating agents and allows alcohol libraries to be leveraged. Oxetane ethers demonstrate excellent chemical stability across a range of conditions and an improved stability vis-à-vis analogous esters under basic and reducing conditions.

Graphical abstract: Synthesis of oxetane and azetidine ethers as ester isosteres by Brønsted acid catalysed alkylation of alcohols with 3-aryl-oxetanols and 3-aryl-azetidinols

Supplementary files

Article information

Article type
Paper
Submitted
10 May 2023
Accepted
15 Jun 2023
First published
15 Jun 2023
This article is Open Access
Creative Commons BY license

Org. Biomol. Chem., 2023,21, 5553-5559

Synthesis of oxetane and azetidine ethers as ester isosteres by Brønsted acid catalysed alkylation of alcohols with 3-aryl-oxetanols and 3-aryl-azetidinols

P. Saejong, J. J. Rojas, C. Denis, A. J. P. White, A. S. Voisin-Chiret, C. Choi and J. A. Bull, Org. Biomol. Chem., 2023, 21, 5553 DOI: 10.1039/D3OB00731F

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