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Journal article : Review

Sulfonyl fluorides as targets and substrates in the development of new synthetic methods

Abstract:
The advent of sulfur(VI)-fluoride exchange (SuFEx) processes as transformations with click-like reactivity has invigorated research into electrophilic species featuring a sulfur–fluorine bond. Among these, sulfonyl fluorides have emerged as the workhorse functional group, with diverse applications being reported. Sulfonyl fluorides are used as electrophilic warheads by both medicinal chemists and chemical biologists. The balance of reactivity and stability that is so attractive for these applications, particularly the resistance of sulfonyl fluorides to hydrolysis under physiological conditions, has provided opportunities for synthetic chemists. New synthetic approaches that start with sulfur-containing substrates include the activation of sulfonamides using pyrilium salts, the deoxygenation of sulfonic acids, and the electrochemical oxidation of thiols. Employing non-sulfur-containing substrates has led to the development of transition-metal-catalysed processes based on palladium, copper and nickel, as well as the use of SO2F2 gas as an electrophilic hub. Selectively manipulating molecules that already contain a sulfonyl fluoride group has also proved to be a popular tactic, with metal-catalysed processes again at the fore. Finally, coaxing sulfonyl fluorides to engage with nucleophiles, when required, and under suitable reaction conditions, has led to new activation methods. This Review provides an overview of the challenges in the efficient synthesis and manipulation of these intriguing functional groups.
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.1038/s41570-021-00352-8

Authors


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Institution:
University of Oxford
Division:
MPLS
Department:
Chemistry
Sub department:
Organic Chemistry
Oxford college:
Lincoln College
Role:
Author
ORCID:
0000-0002-0636-6471


Publisher:
Springer Nature
Journal:
Nature Reviews Chemistry More from this journal
Volume:
6
Pages:
146-162
Publication date:
2022-01-19
Acceptance date:
2021-12-07
DOI:
EISSN:
2397-3358


Language:
English
Keywords:
Subtype:
Review
Pubs id:
1236060
Local pid:
pubs:1236060
Deposit date:
2022-02-25

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