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Transition-metal-free continuous-flow synthesis of 2,5-diaryl furans: access to medicinal building blocks and optoelectronic materials

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posted on 2024-02-14, 10:24 authored by Helena F Grantham, Robert J Lee, Grzegorz WardasGrzegorz Wardas, Jai Mistry, Mark ElsegoodMark Elsegood, Iain A Wright, Gareth Pritchard, Marc KimberMarc Kimber
The direct transformation of 1,3-dienes into valuable 2,5-diarylfurans using transition-metal-free conditions is presented. By employing a simple oxidation─dehydration sequence on readily accessible 1,3-dienes, important 2,5-diarylfuran building blocks frequently used in medicinal and material chemistry are prepared. The oxidation step is realized using singlet oxygen, and the intermediate endoperoxide is dehydrated under metal-free conditions and at ambient temperature using the Appel reagent. Notably, this sequence can be streamlined into continuous flow, thereby eliminating the isolation of the intermediate, often unstable endoperoxide. This leads to a significant improvement in isolated yields (ca. 27% average increase) of the 2,5-diarylfurans while also increasing safety and reducing waste. Our transition-metal-free synthetic approach to 2,5-diarylfurans delivers several important furan building blocks used commonly in medicinal chemistry and as optoelectronic materials, including short-chain linearly conjugated furan oligomers. Consequently, we also complete a short study of the optical and electrochemical properties of a selection of these novel materials.

Funding

DTP 2016-2017 Loughborough University

Engineering and Physical Sciences Research Council

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DTP 2018-19 Loughborough University

Engineering and Physical Sciences Research Council

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Tackling Antimicrobial Resistance: An Interdisciplinary Approach

Engineering and Physical Sciences Research Council

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EPSRC Centre for Doctoral Training in Sustainable Hydrogen - SusHy

Engineering and Physical Sciences Research Council

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History

School

  • Science

Department

  • Chemistry

Published in

The Journal of Organic Chemistry

Volume

89

Issue

1

Pages

484 - 497

Publisher

American Chemical Society

Version

  • VoR (Version of Record)

Rights holder

© The Authors

Publisher statement

This is an Open Access Article. It is published by the American Chemical Society under the Creative Commons Attribution 4.0 International Licence (CC BY). Full details of this licence are available at: https://creativecommons.org/licenses/by/4.0/

Acceptance date

2023-12-12

Publication date

2023-12-25

Copyright date

2023

ISSN

0022-3263

eISSN

1520-6904

Language

  • en

Depositor

Deposit date: 12 February 2024

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