The allylic chalcogen effect in olefin metathesis

Olefin metathesis has emerged as a powerful tool in organic synthesis. The activating effect of an allylic hydroxy group in metathesis has been known for more than 10 years, and many organic chemists have taken advantage of this positive influence for efficient synthesis of natural products. Recentl...

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Main Authors: Yuya A. Lin, Benjamin G. Davis
Format: Article
Language:English
Published: Beilstein-Institut 2010-12-01
Series:Beilstein Journal of Organic Chemistry
Subjects:
Online Access:https://doi.org/10.3762/bjoc.6.140
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spelling doaj-1b8d1cf6cd474b9b996090bb3a7e6cf22021-02-02T05:07:26ZengBeilstein-InstitutBeilstein Journal of Organic Chemistry1860-53972010-12-01611219122810.3762/bjoc.6.1401860-5397-6-140The allylic chalcogen effect in olefin metathesisYuya A. Lin0Benjamin G. Davis1Department of Chemistry, University of Oxford, Chemistry Research Laboratory, 12 Mansfield Road, Oxford OX1 3TA, United KingdomDepartment of Chemistry, University of Oxford, Chemistry Research Laboratory, 12 Mansfield Road, Oxford OX1 3TA, United KingdomOlefin metathesis has emerged as a powerful tool in organic synthesis. The activating effect of an allylic hydroxy group in metathesis has been known for more than 10 years, and many organic chemists have taken advantage of this positive influence for efficient synthesis of natural products. Recently, the discovery of the rate enhancement by allyl sulfides in aqueous cross-metathesis has allowed the first examples of such a reaction on proteins. This led to a new benchmark in substrate complexity for cross-metathesis and expanded the potential of olefin metathesis for other applications in chemical biology. The enhanced reactivity of allyl sulfide, along with earlier reports of a similar effect by allylic hydroxy groups, suggests that allyl chalcogens generally play an important role in modulating the rate of olefin metathesis. In this review, we discuss the effect of allylic chalcogens in olefin metathesis and highlight its most recent applications in synthetic chemistry and protein modifications.https://doi.org/10.3762/bjoc.6.140allyl substituent effectallyl sulfidesaqueous chemistryolefin metathesisprotein modifications
collection DOAJ
language English
format Article
sources DOAJ
author Yuya A. Lin
Benjamin G. Davis
spellingShingle Yuya A. Lin
Benjamin G. Davis
The allylic chalcogen effect in olefin metathesis
Beilstein Journal of Organic Chemistry
allyl substituent effect
allyl sulfides
aqueous chemistry
olefin metathesis
protein modifications
author_facet Yuya A. Lin
Benjamin G. Davis
author_sort Yuya A. Lin
title The allylic chalcogen effect in olefin metathesis
title_short The allylic chalcogen effect in olefin metathesis
title_full The allylic chalcogen effect in olefin metathesis
title_fullStr The allylic chalcogen effect in olefin metathesis
title_full_unstemmed The allylic chalcogen effect in olefin metathesis
title_sort allylic chalcogen effect in olefin metathesis
publisher Beilstein-Institut
series Beilstein Journal of Organic Chemistry
issn 1860-5397
publishDate 2010-12-01
description Olefin metathesis has emerged as a powerful tool in organic synthesis. The activating effect of an allylic hydroxy group in metathesis has been known for more than 10 years, and many organic chemists have taken advantage of this positive influence for efficient synthesis of natural products. Recently, the discovery of the rate enhancement by allyl sulfides in aqueous cross-metathesis has allowed the first examples of such a reaction on proteins. This led to a new benchmark in substrate complexity for cross-metathesis and expanded the potential of olefin metathesis for other applications in chemical biology. The enhanced reactivity of allyl sulfide, along with earlier reports of a similar effect by allylic hydroxy groups, suggests that allyl chalcogens generally play an important role in modulating the rate of olefin metathesis. In this review, we discuss the effect of allylic chalcogens in olefin metathesis and highlight its most recent applications in synthetic chemistry and protein modifications.
topic allyl substituent effect
allyl sulfides
aqueous chemistry
olefin metathesis
protein modifications
url https://doi.org/10.3762/bjoc.6.140
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