Issue 8, 2021

Design, synthesis, and properties of a six-membered oligofuran macrocycle

Abstract

Herein, we present the synthesis and properties of an ester-functionalized macrocyclic sexifuran (C6FE). This molecule was prepared in a single step from a furan-3-carboxylate dimer using a commercially available palladium catalyst (SPhos-Pd-G3) and isolated in 34% yield. DFT calculations predict the macrocyclic ring is planar, with minimal ring strain. The macrocycle is partially crystalline, as evidenced by powder X-ray diffraction patterns. Furthermore, the solid-state organization can be altered by modification of the ester side-chain. C6FE can also undergo two electron oxidation and reduction in solution as evidenced by cyclic voltammetry. Quantum chemical investigations revealed how aromaticity along the entire sexifuran macrocycle may play a role in the reversible electrochemistry. Overall, we anticipate that the synthetic approach detailed in this report can serve as a foundation to construct new furan-based conjugated macrocycles.

Graphical abstract: Design, synthesis, and properties of a six-membered oligofuran macrocycle

Supplementary files

Article information

Article type
Research Article
Submitted
08 Oct 2020
Accepted
21 Jan 2021
First published
22 Feb 2021

Org. Chem. Front., 2021,8, 1775-1782

Author version available

Design, synthesis, and properties of a six-membered oligofuran macrocycle

A. J. Varni, M. Kawakami, S. A. Tristram-Nagle, D. Yaron, T. Kowalewski and K. J. T. Noonan, Org. Chem. Front., 2021, 8, 1775 DOI: 10.1039/D1QO00084E

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